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335 peer-reviewed articles • 13,641 peer-reviewed citations • Sorted by year • Download PDF (PDF by citations)
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1Insights into the Crystal Structure and Thermoelectric Properties of the Zintl Phase Ca9Cd3+x–yMx+ySb9 (M = Cu, Zn) System
Chemistry of Materials, 2025, 37, 368-377
6.76Citations (PDF)
2Hafnium-Based Chiral 2D Organic–Inorganic Hybrid Metal Halides: Engineering Polarity and Nonlinear Optical Properties via Para-Substituent Effects15.068Citations (PDF)
3Deep-ultraviolet sulfamate halides with halogen-centered secondary building units for enhanced optical anisotropy
Inorganic Chemistry Frontiers, 2025, 12, 1900-1908
6.34Citations (PDF)
4Eu-Substituents-Induced Modifications in the Thermoelectric Properties of the Zintl Phase Ba1-xEuxZn2Sb2 System
Molecules, 2025, 30, 310
4.22Citations (PDF)
5Chemical Substitution‐Driven Design of a High‐Performance Noncentrosymmetric Bismuth Molybdenum Selenite7.07Citations (PDF)
6Zwitterionic Glycine-Based Antimony Fluorides with Exceptional Ultraviolet Nonlinear Optical Properties
Chemistry of Materials, 2025, 37, 1306-1313
6.77Citations (PDF)
7(NH 4 ) 2 Cd 2 Cl 3 F 3 and (NH 4 ) 2 Cd 2 Br 3 F 3 : The First Fluoride‐Containing d 10
Advanced Science, 2025, 12,
12.618Citations (PDF)
8Synergistic engineering of ultraviolet metal-free crystals with exceptional birefringence via pyridine-derived dimers
Chemical Science, 2025, 16, 4703-4709
7.111Citations (PDF)
9Giant Birefringence Enabled by the Highly Anisotropic Linear IX 2 − (X = Cl, Br) Building Blocks14.428Citations (PDF)
10Giant Birefringence Enabled by the Highly Anisotropic Linear IX 2 − (X = Cl, Br) Building Blocks
Angewandte Chemie, 2025, 137,
1.44Citations (PDF)
11Designed Metal‐Free Quasi‐1D Crystals with Giant Birefringence3.44Citations (PDF)
12Inside Front Cover: Giant Birefringence Enabled by the Highly Anisotropic Linear IX 2 ‐ (X=Cl, Br) Building Blocks (Angew. Chem. 27/2025)
Angewandte Chemie, 2025, 137,
1.41Citations (PDF)
13Dimensionality-driven photoluminescence enhancement in Cl/Br mixed-halide organic–inorganic hybrid cadmium halides
Dalton Transactions, 2025, 54, 9261-9269
3.03Citations (PDF)
14(R)‐ and (S)‐SbF3(C8H9NO3): Chiral Antimony‐Based Hybrid Materials with Enhanced Second‐Harmonic Generation and Birefringence3.02Citations (PDF)
15Dual Chemical Scissors Strategy Enables 1D Antimony Selenates with Ultraviolet Nonlinear Optical Properties
Angewandte Chemie, 2025, 137,
1.44Citations (PDF)
16Dual Chemical Scissors Strategy Enables 1D Antimony Selenates with Ultraviolet Nonlinear Optical Properties14.423Citations (PDF)
17Y(HPO4)(NO3)(H2O)·2H2O: A Solvent-Responsive Inorganic Layered Material with Reversible Phase Transitions and Optically Active Proton Conductivity
Chemistry of Materials, 2025, 37, 4910-4916
6.71Citations (PDF)
18Homochiral Coordination Polymers Exhibiting Second-Harmonic Generation and Photo-Induced Structural Transformation
Inorganic Chemistry, 2025, 64, 13422-13428
4.67Citations (PDF)
19CsICl2: A Record-Birefringent Inorganic Crystal with Ultrawide Infrared Transparency Enabled by Linear Interhalogen ICl2– Units15.031Citations (PDF)
20Designing Sulfate Crystals with Strong Optical Anisotropy through π‐Conjugated Tailoring
Angewandte Chemie, 2024, 136,
1.49Citations (PDF)
21Designing Sulfate Crystals with Strong Optical Anisotropy through π‐Conjugated Tailoring14.447Citations (PDF)
22Deep‐Ultraviolet Transparent Mixed Metal Sulfamates with Enhanced Nonlinear Optical Properties and Birefringence14.469Citations (PDF)
23Deep‐Ultraviolet Transparent Mixed Metal Sulfamates with Enhanced Nonlinear Optical Properties and Birefringence
Angewandte Chemie, 2024, 136,
1.48Citations (PDF)
24Innentitelbild: Designing Sulfate Crystals with Strong Optical Anisotropy through π‐Conjugated Tailoring (Angew. Chem. 4/2024)
Angewandte Chemie, 2024, 136,
1.40Citations (PDF)
25Multifunctional Chiral d10‐Metal Coordination Polymers: Tunable Photoluminescence and Efficient Second‐Harmonic Generation with Circular Dichroic Response
Small, 2024, 20,
11.516Citations (PDF)
26Effect of co‐substitution on complex thermoelectric compounds: The Zintl phase Ba1‐xSrxZn2‐yCuySb2 system2.15Citations (PDF)
27Exceptional Optical Anisotropy Enhancement Achieved Through Dual‐Ions Cosubstitution Strategy in Novel Hybrid Bismuth Halides
Small, 2024, 20,
11.522Citations (PDF)
28Frontispiz: Deep‐Ultraviolet Transparent Mixed Metal Sulfamates with Enhanced Nonlinear Optical Properties and Birefringence
Angewandte Chemie, 2024, 136,
1.41Citations (PDF)
29Designing Optical Anisotropy: Silver-Aminoalkylpyridine Nitrate Complexes with Tunable Structures
Inorganic Chemistry, 2024, 63, 2793-2802
4.63Citations (PDF)
30Unveiling plasmonic marvels: Enhanced up-conversion efficiency in Y2SiO5:Pr3+ phosphors through controlled shell encapsulation
Materialia, 2024, 33, 102029
2.51Citations (PDF)
31[Cd2((S,S)-IBPhe)2(2,2′-bipy)2]·2H2O and [Cd2((R,R)-IBPhe)2(2,2′-bipy)2]·2H2O (IBPhe = Isophthaloyl-bis-phenylalanine): One-Dimensional Chiral Coordination Polymers with Selective Dye Adsorption
Crystal Growth and Design, 2024, 24, 1774-1783
3.44Citations (PDF)
32Guanidinium Vanadate [C(NH2)3]3VO4·2H2O Revealing Enhanced Second-Harmonic Generation and Wide Band Gaps
Inorganic Chemistry, 2024, 63, 3578-3585
4.613Citations (PDF)
33Crystal structure of <i>catena</i>-poly[aqua-(<i>μ</i> <sub>2</sub>-1,4-diazabicyclo[2.2.2]octane-k<sup>2</sup> <i>N</i>: <i>N</i>′)-bis(sorbato-<i>κ</i> <sup>1</sup> <i>O</i>)-copper(II), C<sub>18</sub>H<sub>28</sub>CuN<sub>2</sub>O<sub>5</sub>0.30Citations (PDF)
34Polymorphisms in M2+AlF5(H2O)7 (M2+ = Fe2+, Co2+, or Ni2+): Syntheses, Crystal Structures, and Characterization of New Mixed Metal Fluoride Hydrates
Crystals, 2024, 14, 197
2.10Citations (PDF)
35Crystal structure of <i>catena</i>-poly[(benzylamine-κ<sup>1</sup> <i>N</i>)-(sorbato-κ<sup>1</sup> <i>O</i>)-(μ<sub>2</sub>-sorbato-κ<sup>2</sup> <i>O</i>,<i>O</i>′)-copper(II), C<sub>19</sub>H<sub>23</sub>CuNO<sub>4</sub>0.30Citations (PDF)
36Hydrogen bonding bolstered head-to-tail ligation of functional chromophores in a 0D SbF3·glycine adduct for a short-wave ultraviolet nonlinear optical material
Chemical Science, 2024, 15, 6572-6576
7.128Citations (PDF)
37Breaking Boundaries: Giant Ultraviolet Birefringence in Dimension‐Reduced Zn‐Based Crystals
Angewandte Chemie, 2024, 136,
1.42Citations (PDF)
38Breaking Boundaries: Giant Ultraviolet Birefringence in Dimension‐Reduced Zn‐Based Crystals14.459Citations (PDF)
39Bi(SO4)F·H2O and Bi(SO4)(NO3)·3H2O: Chemical Substitution-Induced Birefringence Enhancement in Bismuth Sulfates
Inorganic Chemistry, 2024, 63, 13748-13754
4.65Citations (PDF)
40Golden ratio of the r+/r- for the structure-selectivity in the thermoelectric BaZn2-Cd Sb2 system6.06Citations (PDF)
41Crystal clear: unveiling giant birefringence in organic–inorganic cocrystals
Chemical Science, 2024, 15, 10193-10199
7.131Citations (PDF)
42Strategically designed metal-free deep-ultraviolet birefringent crystals with superior optical properties
Chemical Science, 2024, 15, 15145-15151
7.115Citations (PDF)
43Comparison of oxygen evolution reaction performance for Ni and Co using isostructural trans‐cinnamate complexes2.112Citations (PDF)
44Complex Structure, Chemical Bonding, and Electrical Transport Properties of a La-Doped Zintl Phase
Inorganics, 2024, 12, 333
2.72Citations (PDF)
45Syntheses, structures, and optical properties of n = 3 layered Dion–Jacobson perovskites, RbEu2-Bi Ti2NbO10 (0 ≤ x ≤ 2)6.01Citations (PDF)
46Cd(NH2SO3)2·xH2O (x= 0, 2): new sulfamates with a unique coordination environment and reversible phase transitions
Inorganic Chemistry Frontiers, 2023, 10, 1411-1420
6.318Citations (PDF)
47One Carbon Ring Expansion of Bipyrrole to Bipyridine Enables Access to a π‐Extended, Non‐innocent, Corrole‐like Ligand3.44Citations (PDF)
48Small Changes, Big Impact: Tungsten Bronzes with Extremely Large Second Harmonic Generation Achieved by the Transition Metal Doping on the B‐Site17.026Citations (PDF)
49Elucidating the structure-nonlinear optical property relationship of Te2O4(OH)2
Materials Today Physics, 2023, 34, 101075
6.16Citations (PDF)
50A Rare‐Earth Selenite with Unexpectedly Well‐Balanced Ultraviolet Nonlinear Optical Functionality, Sc(HSeO3)3
Small, 2023, 19,
11.528Citations (PDF)
51Crystal structure of bis(benzylamine-κ1 N)-bis((E)-2-methyl-3-phenylacrylato-κ1 O)copper(II), C34H36CuN2O40.30Citations (PDF)
52Dramatically improved optical anisotropy by realizing stereochemically active lone pairs in a sulfate system, K2SO4·HIO3
Inorganic Chemistry Frontiers, 2023, 10, 1919-1925
6.322Citations (PDF)
53DFT-Based Study for the Enhancement of CO2 Adsorption on Metal-Doped Nitrogen-Enriched Polytriazines
ACS Omega, 2023, 8, 8876-8884
4.221Citations (PDF)
54Synthesis of Cobalt Complex Containing Trans-Cinnamate and Its Electrocatalytic Activity for Oxygen Evolution Reaction
Catalysts, 2023, 13, 507
3.76Citations (PDF)
55Unveiling the Superior Optical Properties of Novel Melamine‐Based Nonlinear Optical Material with Strong Second‐Harmonic Generation and Giant Optical Anisotropy
Small, 2023, 19,
11.569Citations (PDF)
56Advances in aliovalent substitution strategy for the design and synthesis of nonlinear optical materials: d0 transition metal/gallium iodates and selenites23.167Citations (PDF)
57A Polar Tetragonal Tungsten Bronze with Colossal Second‐Harmonic Generation
Advanced Science, 2023, 10,
12.617Citations (PDF)
58Cd2Nb2Te4O15: A Novel Pseudo‐Aurivillius‐Type Tellurite with Unprecedented Nonlinear Optical Properties and Excellent Stability
Small, 2023, 19,
11.537Citations (PDF)
59Tuning the Radius Ratio to Enhance Thermoelectric Properties in the Zintl Compounds AM2Sb2 (A = Ba, Sr; M = Zn, Cd)
Chemistry of Materials, 2023, 35, 3985-3997
6.718Citations (PDF)
60KHC2O4·B(OH)3: A nonlinear optical crystal with large birefringence in the short‐wavelength ultraviolet region2.17Citations (PDF)
61Yb Substitution and Ultralow Thermal Conductivity of the Ca3–xYbxAlSb3 (0 ≤ x ≤ 0.81(1)) System
Inorganic Chemistry, 2023, 62, 10141-10151
4.64Citations (PDF)
62Sr(NO3)(NH2SO3)·H2O: First Nitrate Sulfamate Revealing Remarkable Second Harmonic Generation and Optimized Birefringence
Small Structures, 2023, 4,
11.022Citations (PDF)
63Green and Red Photoluminescent Manganese Bromides with Aminomethylpyridine Isomers
Inorganic Chemistry, 2023, 62, 12058-12066
4.66Citations (PDF)
64Synthesis and Anti-Inflammatory Activity of N(2)-Arylindazol-3(2H)-One Derivatives: Copper-Promoted Direct N-Arylation via Chan–Evans–Lam Coupling
Molecules, 2023, 28, 6706
4.21Citations (PDF)
65Cu(I)-thioether coordination complexes based on a chiral cyclic β-amino acid ligand5.53Citations (PDF)
66Chiral amino acid-templated tin fluorides tailoring nonlinear optical properties, birefringence, and photoluminescence
Dalton Transactions, 2023, 53, 105-114
3.015Citations (PDF)
67Conformational Adaptation of β‐Peptide Foldamers for the Formation of Metal–Peptide Frameworks14.421Citations (PDF)
68Conformational Adaptation of β‐Peptide Foldamers for the Formation of Metal–Peptide Frameworks
Angewandte Chemie, 2022, 134,
1.47Citations (PDF)
69Low-temperature synthesis of molybdenum sulfides, tungsten sulfides, and composites thereof as efficient electrocatalysts for hydrogen evolution reaction
Applied Surface Science, 2022, 576, 151828
6.623Citations (PDF)
70Nonlinear optical properties of a new polar bismuth tellurium oxide fluoride, Bi3F(TeO3)(TeO2F2)36.016Citations (PDF)
71Chiral Ligand‐Driven Systematic Synthesis of Coordination Polymers with Non‐centrosymmetric Structures3.411Citations (PDF)
72High‐Performance Sulfate Optical Materials Exhibiting Giant Second Harmonic Generation and Large Birefringence14.4191Citations (PDF)
73High‐Performance Sulfate Optical Materials Exhibiting Giant Second Harmonic Generation and Large Birefringence
Angewandte Chemie, 2022, 134,
1.420Citations (PDF)
74Novel layered heterobimetallic fluorides with large optical band gaps3.23Citations (PDF)
75Metal oxyhalides: an emerging family of nonlinear optical materials
Chemical Science, 2022, 13, 3942-3956
7.1119Citations (PDF)
76(R)- and (S)-[C8H10NO3]2[NbOF5]: noncentrosymmetric niobium oxyfluorides with large optical anisotropy
Inorganic Chemistry Frontiers, 2022, 9, 2498-2507
6.33Citations (PDF)
77Frontispiz: Conformational Adaptation of β‐Peptide Foldamers for the Formation of Metal–Peptide Frameworks
Angewandte Chemie, 2022, 134,
1.40Citations (PDF)
78Mg(H2O)6[(IO2(OH))2(IO3)]2: a new iodate with a very large band gap and optical anisotropy5.112Citations (PDF)
79KF·B(OH)3: a KBBF-type material with large birefringence and remarkable deep-ultraviolet transparency
Chemical Communications, 2022, 58, 8770-8773
3.432Citations (PDF)
80Cation-anion synergetic interactions achieving tunable birefringence in quasi-one-dimensional antimony(III) fluoride oxalates
Science China Materials, 2022, 65, 3115-3124
6.756Citations (PDF)
81Discovery of new nonlinear optical materials6.03Citations (PDF)
82Synthesis of Uniform Size Rutile TiO2 Microrods by Simple Molten-Salt Method and Its Photoluminescence Activity
Nanomaterials, 2022, 12, 2626
4.015Citations (PDF)
83[C(NH2)3]2Zn(CO3)2: A Guanidinium-Templated Ultraviolet Nonlinear Optical Material
Inorganic Chemistry, 2022, 61, 12473-12480
4.620Citations (PDF)
84Crystal Growth of K2HCO3F·H2O with a Very Short Cutoff Edge and Large Birefringence
Crystal Growth and Design, 2022, 22, 5639-5644
3.413Citations (PDF)
85Synthesis, photophysical properties and photo-induced cytotoxicity of novel tris(diazatriphenylene)ruthenium (II) complex
Bioorganic Chemistry, 2022, 128, 106044
4.11Citations (PDF)
86Role of Eu-Doping in the Electron Transport Behavior in the Zintl Thermoelectric Ca5–x–yYbxEuyAl2Sb6 System
Chemistry of Materials, 2022, 34, 9903-9914
6.714Citations (PDF)
87Chiral coordination compounds with exceptional enantioselectivity
Journal of Materials Chemistry C, 2022, 10, 17127-17134
5.110Citations (PDF)
88LiRE(SO4)2(RE = Y, Gd, Eu): noncentrosymmetric chiral rare-earth sulfates with very large band gaps6.117Citations (PDF)
89Specific Active Sites of Organo-Photocatalysts for Photo-Atom Transfer Radical Polymerization: A Combined Experimental and Theoretical Study of N-Unsubstituted Diketopyrrolopyrrole
Journal of Physical Chemistry C, 2022, 126, 21576-21584
3.15Citations (PDF)
90Novel enantiomorphic Pb-coordination polymers dictated by the corresponding chiral ligands, [Pb((R,R)-TBA)(H2O)]·1.7H2O and [Pb((S,S)-TBA)(H2O)]·1.7H2O [TBA = 1,3,5-triazin-2(1H)-one-4,6-bis(alanyl)]
Materials Chemistry Frontiers, 2021, 5, 1330-1340
6.120Citations (PDF)
91Chiral Template‐Driven Macroscopic Chirality Control: Structure‐Second‐Harmonic Generation Properties Relationship1.823Citations (PDF)
92Unique synthesis, structure determination, and optical properties of seven new layered rare earth tellurite nitrates, RE(TeO3)(NO3) (RE = La, Nd, Eu, Gd, Dy, Er, and Y)6.015Citations (PDF)
93Homochiral three-dimensional noncentrosymmetric lanthanide coordination polymers directed by chiral linkers: syntheses, crystal structures, and optical properties
CrystEngComm, 2021, 23, 3701-3709
2.47Citations (PDF)
94Early stage of the single-crystal growth and tipping point of the cationic site preference in Gd-doped Zintl phase thermoelectric materials
CrystEngComm, 2021, 23, 7097-7107
2.42Citations (PDF)
95Upconversion properties in lanthanide doped layered-perovskite, CsBiNb2O72.86Citations (PDF)
96Order and Disorder: Toward the Thermodynamically Stable α-BaMoO2F4 from the Metastable Polymorph
Chemistry of Materials, 2021, 33, 1875-1882
6.730Citations (PDF)
97I3O0-Type 3D Framework of Cobalt Cinnamate and Its Efficient Electrocatalytic Activity toward the Oxygen Evolution Reaction
Chemistry of Materials, 2021, 33, 2804-2813
6.714Citations (PDF)
98Catalytic and Enantioselective Control of the C–N Stereogenic Axis via the Pictet–Spengler Reaction14.490Citations (PDF)
99A new bismuth coordination polymer with proton conductivity and orange-red photoluminescence2.55Citations (PDF)
100Sr2Nb6O13F8·4H2O and Sr3Nb2O2F12·2H2O: A Variant of Three-Dimensional Tungsten Bronze and a Polar Molecular Oxide Fluoride
Inorganic Chemistry, 2021, 60, 7914-7921
4.617Citations (PDF)
101Innentitelbild: Hydrogen‐Bond‐Driven Synergistically Enhanced Hyperpolarizability: Chiral Coordination Polymers with Nonpolar Structures Exhibiting Unusually Strong Second‐Harmonic Generation (Angew. Chem. 38/2021)
Angewandte Chemie, 2021, 133, 20734-20734
1.40Citations (PDF)
102Third‐Order Nonlinear Optical Response‐Driven Upconversion Phosphors7.08Citations (PDF)
103p-Type Double Doping and the Diamond-like Morphology Shift of the Zintl Phase Thermoelectric Materials: The Ca11–xAxSb10–yGez (A = Na, Li; 0.06(3) ≤ x ≤ 0.17(5), 0.19(1) ≤ y ≤ 0.55(1), 0.13(1) ≤ z ≤ 0.22(1)) System
Inorganic Chemistry, 2021, 60, 10124-10136
4.610Citations (PDF)
104Hydrogen‐Bond‐Driven Synergistically Enhanced Hyperpolarizability: Chiral Coordination Polymers with Nonpolar Structures Exhibiting Unusually Strong Second‐Harmonic Generation14.484Citations (PDF)
105Hydrogen‐Bond‐Driven Synergistically Enhanced Hyperpolarizability: Chiral Coordination Polymers with Nonpolar Structures Exhibiting Unusually Strong Second‐Harmonic Generation
Angewandte Chemie, 2021, 133, 20824-20828
1.418Citations (PDF)
106p-Type to n-Type Conversion through the “Bypass” Phase Transition in the Zintl-Phase Thermoelectric Materials
Chemistry of Materials, 2021, 33, 6761-6773
6.716Citations (PDF)
107Structural Origin of Very Large Second-Harmonic Generation of a Layered Perovskite, Na0.5Bi2.5Nb2O9
Chemistry of Materials, 2021, 33, 6564-6571
6.720Citations (PDF)
108Novel noncentrosymmetric polar coordination compounds derived from chiral histidine ligands
Inorganic Chemistry Frontiers, 2021, 8, 4536-4543
6.330Citations (PDF)
109Systematic centricity control using a chiral template: novel noncentrosymmetric polar niobium oxyfluorides and tantalum fluorides directed by chiral histidinium cations, [(l-hisH2)NbOF5], [(d-hisH2)NbOF5], [(l-hisH2)TaF7], and [(d-hisH2)TaF7]
Inorganic Chemistry Frontiers, 2021, 8, 3843-3850
6.36Citations (PDF)
110Reply to the Correspondence on “K2Sb(P2O7)F: Cairo Pentagonal Layer with Bifunctional Genes Reveal Optical Performance”
Angewandte Chemie, 2021, 133, 3900-3901
1.41Citations (PDF)
111Synthesis, Structure, and Characterization of Variable Chains in a Series of Transition Metal Coordination Compounds1.86Citations (PDF)
112Na2Mg1−xZnxSiO4 (0 ≤ x ≤ 1): Noncentrosymmetric Sodium Metal Silicate Solid Solutions with Ultraviolet Nonlinear Optical Properties2.169Citations (PDF)
113Synthesis, structure, and third-harmonic generation measurements of a mixed alkali metal iodate, KLi2(IO3)33.222Citations (PDF)
114Hexagonal tungsten oxides with large bandgaps synthesized by a chemical substitution method
Inorganic Chemistry Frontiers, 2020, 7, 4469-4476
6.329Citations (PDF)
115K2Sb(P2O7)F: Cairo Pentagonal Layer with Bifunctional Genes Reveal Optical Performance
Angewandte Chemie, 2020, 132, 21337-21342
1.433Citations (PDF)
116K2Sb(P2O7)F: Cairo Pentagonal Layer with Bifunctional Genes Reveal Optical Performance14.4288Citations (PDF)
117Two Steps to Improve the Thermoelectric Performance of the Ca5–xYbxAl2–yInySb6 System
Inorganic Chemistry, 2020, 59, 13572-13582
4.610Citations (PDF)
118Recent Advances in Oxide‐based Nonlinear Optical Materials with Wide Infrared Transparency Beyond 6 μm
Chemistry - an Asian Journal, 2020, 15, 3709-3716
3.037Citations (PDF)
119Pb18O8Cl15I5: A Polar Lead Mixed Oxyhalide with Unprecedented Architecture and Excellent Infrared Nonlinear Optical Properties14.4156Citations (PDF)
120Pb18O8Cl15I5: A Polar Lead Mixed Oxyhalide with Unprecedented Architecture and Excellent Infrared Nonlinear Optical Properties
Angewandte Chemie, 2020, 132, 20503-20507
1.428Citations (PDF)
121Rücktitelbild: Pb18O8Cl15I5: A Polar Lead Mixed Oxyhalide with Unprecedented Architecture and Excellent Infrared Nonlinear Optical Properties (Angew. Chem. 46/2020)
Angewandte Chemie, 2020, 132, 20896-20896
1.40Citations (PDF)
122Site-Selective n-Type “Heavy” Rare-Earth-Metal Doping in the Complex Zintl Phase Ca11–xRExSb10–y (RE = Tb, Dy, Ho, Er, Tm)
Crystal Growth and Design, 2020, 20, 4503-4511
3.414Citations (PDF)
123Second-Harmonic Generation and Photoluminescence Properties of Sn(II)- and Bi(III)-Based Lone Pair Cation–Pyridine Dicarboxylate Coordination Compounds
Inorganic Chemistry, 2020, 59, 11554-11561
4.616Citations (PDF)
124Noncovalent Intermolecular Interaction in Cofacially Stacked 24π Antiaromatic Hexaphyrin Dimer
Chemistry - A European Journal, 2020, 26, 16434-16440
3.415Citations (PDF)
125A Plausible Formation Mechanism of Polyoxoperoxomolybdates With Variable Structures2.115Citations (PDF)
126Lead Mixed Oxyhalides Satisfying All Fundamental Requirements for High‐Performance Mid‐Infrared Nonlinear Optical Materials
Angewandte Chemie, 2020, 132, 7584-7590
1.454Citations (PDF)
127Lead Mixed Oxyhalides Satisfying All Fundamental Requirements for High‐Performance Mid‐Infrared Nonlinear Optical Materials14.4160Citations (PDF)
128Bi3(SeO3)3(Se2O5)F: A Polar Bismuth Selenite Fluoride with Polyhedra of Highly Distortive Lone Pair Cations and Strong Second-Harmonic Generation Response
Chemistry of Materials, 2020, 32, 7318-7326
6.760Citations (PDF)
129Crystal structure of bis(4-phenylpiperazin-1-ium) bis(2-(4-phenylpiperazin-1-yl)succinato-κ2O,O′)copper(II) tetrahydrate, C48H70CuN8O12, [C10H14N2]2[Cu(C14H17N2O4)2] ⋅ 4 H2O0.32Citations (PDF)
130Chemical Driving Force for Phase-Transition in the Ca2–xRExCdSb2 (RE = Yb, Eu; 0.11(1) ≤ x ≤ 1.36(2)) System
Crystal Growth and Design, 2020, 20, 746-754
3.418Citations (PDF)
131Novel ultraviolet (UV) nonlinear optical (NLO) materials discovered by chemical substitution-oriented design
Chemical Science, 2020, 11, 5404-5409
7.1290Citations (PDF)
132Innentitelbild: Lead Mixed Oxyhalides Satisfying All Fundamental Requirements for High‐Performance Mid‐Infrared Nonlinear Optical Materials (Angew. Chem. 19/2020)
Angewandte Chemie, 2020, 132, 7342-7342
1.40Citations (PDF)
133Dimensionality–Band Gap–Third-Harmonic Generation Property Relationship in Novel Main-Group Metal Iodates
Chemistry of Materials, 2020, 32, 3621-3630
6.739Citations (PDF)
134Influence of structure-directing polyhedra and heterocyclic ligands on the chain structures and O/F ordering in a series of zinc vanadium oxyfluorides
CrystEngComm, 2020, 22, 3206-3214
2.41Citations (PDF)
135Thiostannate coordination transformation-induced self-crosslinking chalcogenide aerogel with local coordination control and effective Cs+ remediation functionality9.328Citations (PDF)
136Crystal structure of (1,3-propanediamine-κ2 N,N′)(N-(3-aminopropyl)-α-methyl aspartato-κ4 N,N′,O,O′)cobalt(III) chloride, C11H24ClCoN4O40.30Citations (PDF)
137Histidinium‐Driven Chirality Control of Self‐Assembled Hybrid Molybdenum Oxyfluorides
Chemistry - A European Journal, 2019, 25, 15871-15878
3.425Citations (PDF)
138Lead–Organic Frameworks Containing Trimesic Acid: Facile Dissolution–Crystallization and Near-White Light Emission
Crystal Growth and Design, 2019, 19, 6274-6282
3.415Citations (PDF)
139Bi2Te2O6(NO3)2(OH)2(H2O): A layered bismuth tellurium nitrate hydroxide with multiple noncentrosymmetric chromophores3.214Citations (PDF)
140Trapping of Stable [4n+1] π‐Electron Species from Peripherally Substituted, Conformationally Rigid, Antiaromatic Hexaphyrins
Chemistry - A European Journal, 2019, 25, 3525-3531
3.414Citations (PDF)
141Frontispiz: CsSbF2SO4: An Excellent Ultraviolet Nonlinear Optical Sulfate with a KTiOPO4 (KTP)‐type Structure
Angewandte Chemie, 2019, 131,
1.40Citations (PDF)
142Mixed Transition Metal (Oxy)fluoride Paramagnet Chains: Synthesis, Structure, and Characterization1.89Citations (PDF)
143Variable Chains Found in Mixed Transition Metal Oxyfluorides with Heterocyclic Ligands
Crystal Growth and Design, 2019, 19, 3435-3444
3.48Citations (PDF)
144meso-Bis(ethynyl) Versus meso-Bis(aryl) Calix[4]pyrroles: Dimensionally Well-Modulated Receptors That Can Regulate the Anion Binding Domains
Journal of Organic Chemistry, 2019, 84, 6851-6857
3.59Citations (PDF)
145Effect of Rare-Earth Metals Substitution for Ca on the Crystal Structure and Thermoelectric Properties of the Ca11–xRExSb10–y System
Crystal Growth and Design, 2019, 19, 3498-3508
3.415Citations (PDF)
146Crystals of Sb3+-coordination complexes exhibiting yellowish green emissions with outstanding lifetimes3.210Citations (PDF)
147CsSbF2SO4: An Excellent Ultraviolet Nonlinear Optical Sulfate with a KTiOPO4 (KTP)‐type Structure
Angewandte Chemie, 2019, 131, 6598-6604
1.485Citations (PDF)
148CsSbF2SO4: An Excellent Ultraviolet Nonlinear Optical Sulfate with a KTiOPO4 (KTP)‐type Structure14.4417Citations (PDF)
149Crystal structure of diaqua-bis(cinnamato-κ<sup>2</sup> <i>O</i>,<i>O′</i>)zinc(II), C<sub>18</sub>H<sub>18</sub>ZnO<sub>6</sub>0.30Citations (PDF)
150Layered Bismuth Oxyfluoride Nitrates Revealing Large Second-Harmonic Generation and Photocatalytic Properties
Inorganic Chemistry, 2019, 58, 2183-2190
4.636Citations (PDF)
151Preparation and characterization of single crystals of tetrakis(4-(5,5-dimethyl-2-phenyl-1,3-dioxan-2-yl)phenyl)germane5.81Citations (PDF)
152Li6M(SeO3)4 (M = Co, Ni, and Cd) and Li2Zn(SeO3)2: Selenites with Late Transition-Metal Cations
Inorganic Chemistry, 2018, 57, 3465-3473
4.631Citations (PDF)
153Pb[NC5H3(CO2)2]: a white light emitting single component coordination polymer revealing high quantum efficiency and thermal stability
Inorganic Chemistry Frontiers, 2018, 5, 1273-1276
6.325Citations (PDF)
154Synthesis, second-harmonic generation (SHG), and photoluminescence (PL) properties of noncentrosymmetric bismuth selenite solid solutions, Bi 2-x Ln x SeO 5 (Ln = La and Eu; x  = 0–0.3)
Solid State Sciences, 2018, 76, 105-110
3.02Citations (PDF)
155Preparation of a Sr2-xEuxSi5N8 Phosphor Using an Ion Transporter2.13Citations (PDF)
156From a Metastable Layer to a Stable Ring: A Kinetic Study for Transformation Reactions of Li2Mo3TeO12 to Polyoxometalates
Chemistry - A European Journal, 2018, 24, 6712-6716
3.412Citations (PDF)
157Crystal structure of diaqua-bis(3,3-dimethylacrylato-κ<sup>2</sup> <i>O,O′</i>)zinc(II), C<sub>10</sub>H<sub>18</sub>ZnO<sub>6</sub>0.31Citations (PDF)
158[((R)-C8H12N)4][Bi2Br10] and [((S)-C8H12N)4][Bi2Br10]: Chiral Hybrid Bismuth Bromides Templated by Chiral Organic Cations
ACS Omega, 2018, 3, 17895-17903
4.272Citations (PDF)
159Cs3VO(O2)2CO3: an exceptionally thermostable carbonatoperoxovanadate with an extremely large second-harmonic generation response
Chemical Science, 2018, 9, 8957-8961
7.1124Citations (PDF)
160Solvothermal Synthesis of Ferroelectric BaTiO3 Nanoparticles and Their Application to Dye-sensitized Solar Cells0.810Citations (PDF)
161Rb3VO(O2)2CO3: A Four‐in‐One Carbonatoperoxovanadate Exhibiting an Extremely Strong Second‐Harmonic Generation Response14.4201Citations (PDF)
162Variable Asymmetric Chains in Transition Metal Oxyfluorides: Structure–Second-Harmonic-Generation Property Relationships
Inorganic Chemistry, 2018, 57, 6702-6709
4.616Citations (PDF)
163Rb3VO(O2)2CO3: A Four‐in‐One Carbonatoperoxovanadate Exhibiting an Extremely Strong Second‐Harmonic Generation Response
Angewandte Chemie, 2018, 130, 8755-8758
1.440Citations (PDF)
164A series of oxyfluoride chains containing asymmetric basic building units of both early- and late-transition metal cations3.25Citations (PDF)
165Unexpected halide anion binding modes in meso-bis-ethynyl picket-calix[4]pyrroles: effects of meso-π (ethynyl) extension
Chemical Communications, 2018, 54, 7936-7939
3.47Citations (PDF)
166Influence of Thermally Activated Solid-State Crystal-to-Crystal Structural Transformation on the Thermoelectric Properties of the Ca5–xYbxAl2Sb6 (1.0 ≤ x ≤ 5.0) System
Chemistry of Materials, 2017, 29, 1384-1395
6.722Citations (PDF)
167Hexagonal tungsten oxide nanoflowers as enzymatic mimetics and electrocatalysts3.438Citations (PDF)
168Synthesis, second-harmonic generations (SHG), and photoluminescence (PL) properties of Ca 4 Bi 6-x Ln x O 13 (Ln=La and Eu) solid solutions3.23Citations (PDF)
169Syntheses, Structures, and Characterization of Quaternary Tellurites, Li<sub>3</sub>MTe<sub>4</sub>O<sub>11</sub> (M = Al, Ga, and Fe)
Inorganic Chemistry, 2017, 56, 5873-5879
4.613Citations (PDF)
170Crystal structure of tetrakis(μ2-3,3-dimethylacrylato-κ2O,O′)-bis(2-aminopyrimidine-κN) dicopper(II), C28H38Cu2N6O80.30Citations (PDF)
171Effect of MultiSubstitution on the Thermoelectric Performance of the Ca11−xYbxSb10−yGez (0 ≤ x ≤ 9; 0 ≤ y ≤ 3; 0 ≤ z ≤ 3) System: Experimental and Theoretical Studies
Inorganic Chemistry, 2017, 56, 7099-7110
4.620Citations (PDF)
172Photoconversion Mechanisms and the Origin of Second-Harmonic Generation in Metal Iodates with Wide Transparency, NaLn(IO3)4 (Ln = La, Ce, Sm, and Eu) and NaLa(IO3)4:Ln3+ (Ln = Sm and Eu)
Inorganic Chemistry, 2017, 56, 6973-6981
4.632Citations (PDF)
173Major Role of Surface Area in Perovskite Electrocatalysts for Alkaline Systems
ChemElectroChem, 2017, 4, 468-471
2.912Citations (PDF)
174Noncentrosymmetric (NCS) solid solutions: elucidating the structure–nonlinear optical (NLO) property relationship and beyond
Dalton Transactions, 2017, 46, 15628-15635
3.019Citations (PDF)
175New quaternary alkali metal cadmium selenites, A 2 Cd(SeO 3 ) 2 (A = K, Rb, and Cs) and Li 2 Cd 3 (SeO 3 ) 43.23Citations (PDF)
176BF2‐Complexes of Carbazole–Benzimidazole Conjugates: Synthesis, Structures, and Spectroscopic Properties2.17Citations (PDF)
177Li13Mn(SeO3)8: Lithium-Rich Transition Metal Selenite Containing Jahn–Teller Distortive Cations
Inorganic Chemistry, 2017, 56, 9369-9375
4.65Citations (PDF)
178Variable dimensionality and framework found in a series of quaternary zinc selenites, A 2 Zn 3 (SeO 3 ) 4 · x H 2 O (A = Na, Rb, and Cs; 0≤ x ≤1) and Cs 2 Zn 2 (SeO 3 ) 3 ·2H 2 O3.26Citations (PDF)
179Anisotropic Li+ ion conductivity in a large single crystal of a Co(iii) coordination complex6.314Citations (PDF)
180Rb2Na(NO3)3: A Congruently Melting UV-NLO Crystal with a Very Strong Second-Harmonic Generation Response
Crystals, 2016, 6, 42
2.169Citations (PDF)
181Cationic Site-Preference in the Yb14-xCaxAlSb11 (4.81 ≤ x ≤ 10.57) Series: Theoretical and Experimental Studies
Materials, 2016, 9, 553
2.816Citations (PDF)
182Polar Noncentrosymmetric ZnMoSb2O7 and Nonpolar Centrosymmetric CdMoSb4O10: d10 Transition Metal Size Effect Influencing the Stoichiometry and the Centricity
Inorganic Chemistry, 2016, 55, 6286-6293
4.636Citations (PDF)
183Nonlinear optical (NLO) properties and temperature-dependent photoluminescence in activator-doped noncentrosymmetric (NCS) bismuth tellurite solid solutions, Bi2−Ln TeO5 (Ln = Ce and Eu)6.08Citations (PDF)
184Influence of Ca-doping in layered perovskite PrBaCo2O5+δ on the phase transition and cathodic performance of a solid oxide fuel cell9.389Citations (PDF)
185LiSc(SeO3)2·xH2O (0 ≤ x ≤ 1): New Selenites Revealing Water Molecule-Driven Extremely High Temperature Single-Crystal-to-Single-Crystal Transformations
Crystal Growth and Design, 2016, 16, 3076-3080
3.417Citations (PDF)
186Pb2BO3Cl: A Tailor‐Made Polar Lead Borate Chloride with Very Strong Second Harmonic Generation
Angewandte Chemie, 2016, 128, 12257-12261
1.4130Citations (PDF)
187Crystal Structure, 7Li NMR, and Structural Relationship of Two Rare‐Earth Metal Richer Polar Intermetallics: La15Ge9Li1.50(16) and La7Ge32.14Citations (PDF)
188Pb2BO3Cl: A Tailor‐Made Polar Lead Borate Chloride with Very Strong Second Harmonic Generation14.4380Citations (PDF)
189A Polar Titanium–Organic Chain with a Very Large Second-Harmonic-Generation Response
Inorganic Chemistry, 2016, 55, 11635-11638
4.65Citations (PDF)
190Toward the Rational Design of Novel Noncentrosymmetric Materials: Factors Influencing the Framework Structures
Accounts of Chemical Research, 2016, 49, 2774-2785
17.0588Citations (PDF)
191New niobium selenites, ANbO(SeO3)2 (A = Na, K, Rb, and Cs): Effect of alkali metal cation size on the dimensionality and intraoctahedral distortion6.010Citations (PDF)
192Crystal structure of <i>trans</i>-bis(2-methylmaleato-<i>κ</i> <sup>2</sup>O,O′) bis(piperazinium-<i>κ</i> <i>N</i>) cobalt(II) trihydrate, C<sub>18</sub>H<sub>36</sub>CoN<sub>4</sub>O<sub>11</sub>0.30Citations (PDF)
193Optical characteristics and longevity of the line-emitting K_2SiF_6:Mn^4+ phosphor for LED application2.676Citations (PDF)
194Controlled aqueous synthesis of ultra-long copper nanowires for stretchable transparent conducting electrode5.192Citations (PDF)
195Ytterbium oxide nanodots via block copolymer self-assembly and their efficacy to dye-sensitized solar cells
Applied Surface Science, 2016, 364, 573-578
6.611Citations (PDF)
196Synthesis and Characterization of Three New Layered Vanadium Tellurites, MVTe2O8 (M = Al, Ga, and Mn): Three-Dimensional (3-D) Antiferromagnetic Behavior of MnVTe2O8 with a Zigzag S = 2 Spin Chain
Inorganic Chemistry, 2016, 55, 1347-1353
4.619Citations (PDF)
197Two New Non-centrosymmetric n = 3 Layered Dion–Jacobson Perovskites: Polar RbBi2Ti2NbO10 and Nonpolar CsBi2Ti2TaO10
Chemistry of Materials, 2016, 28, 2424-2432
6.756Citations (PDF)
198Synthesis, characterization, and electrochemical performance of V-doped Li 2 MnSiO 4 /C composites for Li-ion battery
Materials Letters, 2016, 164, 270-273
2.521Citations (PDF)
199Ce11Ge3.73(2)In6.27: Solid-state synthesis, crystal structure and site-preference3.212Citations (PDF)
200Crystal growth, differential gas adsorption, high thermal stability, and reversible coordination of two new barium-organic frameworks, Ba(SBA)(DMF)4 and Ba2(BTEC)(H2O)3.210Citations (PDF)
201Rich Structural Chemistry in New Alkali Metal Yttrium Tellurites: Three-Dimensional Frameworks of NaYTe4O10, KY(TeO3)2, RbY(TeO3)2, and a Novel Variant of Hexagonal Tungsten Bronze, CsYTe3O8
Inorganic Chemistry, 2015, 54, 389-395
4.623Citations (PDF)
202Macroscopic polarity control with alkali metal cation size and coordination environment in a series of tin iodates6.382Citations (PDF)
203Fast ultrasound-assisted synthesis of Li2MnSiO4 nanoparticles for a lithium-ion battery
Journal of Power Sources, 2015, 294, 522-529
7.922Citations (PDF)
204Pb3[C6(CH3)3(CO2)3H6]2[DMF]3: first layered Pb-Kemp's triacid complex
Chemical Communications, 2015, 51, 13166-13169
3.49Citations (PDF)
205Modulation of Framework and Centricity: Cation Size Effect in New Quaternary Selenites, ASc(SeO3)2 (A = Na, K, Rb, and Cs)
Inorganic Chemistry, 2015, 54, 5032-5038
4.642Citations (PDF)
206Copper(II) complexes with N-substituted aspartic acids: A new one-pot synthesis method via in situ Michael addition of amines to fumaric acid
Inorganica Chimica Acta, 2015, 430, 280-287
2.85Citations (PDF)
207New quaternary oxides with both families of second-order Jahn–Teller (SOJT) distortive cations: Solid-state synthesis, structure determination, and characterization of YNbTe2O8 and YNbSe2O86.012Citations (PDF)
208Second-harmonic generation (SHG) and photoluminescence properties of noncentrosymmetric (NCS) layered perovskite solid solutions, CsBi1−xEuxNb2O7 (x = 0, 0.1, and 0.2)5.130Citations (PDF)
209ACdCO3F (A = K and Rb): new noncentrosymmetric materials with remarkably strong second-harmonic generation (SHG) responses enhanced via π-interaction
RSC Advances, 2015, 5, 84754-84761
4.461Citations (PDF)
210Structure-Directing Effect of Alkali Metal Cations in New Molybdenum Selenites, Na2Mo2O5(SeO3)2, K2Mo2O5(SeO3)2, and Rb2Mo3O7(SeO3)3
Inorganic Chemistry, 2015, 54, 8832-8839
4.615Citations (PDF)
211Crystal structure of two dimensional polymeric poly[bis(μ3-chloro)-(μ2-2- aminopyrimidine-κ2N,N')-dicopper(I)], C8H10Cl4Cu4N60.30Citations (PDF)
212Sr3Bi2(SeO3)6·H2O: A novel anionic layer consisting of second-order Jahn–Teller (SOJT) distortive cations3.29Citations (PDF)
213Detection of Methomyl, a Carbamate Insecticide, in Food Matrices Using Terahertz Time-Domain Spectroscopy2.042Citations (PDF)
214Noncentrosymmetric YVSe2O8 and Centrosymmetric YVTe2O8: Macroscopic Centricities Influenced by the Size of Lone Pair Cation Linkers
Inorganic Chemistry, 2014, 53, 1250-1256
4.663Citations (PDF)
215Rich Structural Chemistry in Scandium Selenium/Tellurium Oxides: Mixed-Valent Selenite–Selenates, Sc2(SeO3)2(SeO4) and Sc2(TeO3)(SeO3)(SeO4), and Ternary Tellurite, Sc2(TeO3)3
Inorganic Chemistry, 2014, 53, 7040-7046
4.642Citations (PDF)
216A molecular porous zirconium–organic material exhibiting highly selective CO2 adsorption, high thermal stability, reversible hydration, facile ligand exchange and exclusive dimerization of phenylacetylene
CrystEngComm, 2014, 16, 5619-5626
2.410Citations (PDF)
217Dimensionality variations in new zirconium iodates: hydrothermal syntheses, structural determination, and characterization of BaZr(IO3)6 and K2Zr(IO3)6
Dalton Transactions, 2014, 43, 10456-10461
3.019Citations (PDF)
218Variable Framework Structures and Centricities in Alkali Metal Yttrium Selenites, AY(SeO3)2 (A = Na, K, Rb, and Cs)
Inorganic Chemistry, 2014, 53, 4756-4762
4.652Citations (PDF)
219Strong Second Harmonic Generation (SHG) Originating from Combined Second-Order Jahn–Teller (SOJT) Distortive Cations in a New Noncentrosymmetric Tellurite, InNb(TeO4)2
Inorganic Chemistry, 2014, 53, 5240-5245
4.651Citations (PDF)
220Cooperative Effects of Cation Size and Variable Coordination Modes of Te4+ on the Frameworks of New Alkali Metal Indium Tellurites, NaIn(TeO3)2, KIn(TeO3)2, RbInTe3O8, and CsInTe3O8
Inorganic Chemistry, 2014, 53, 11328-11334
4.633Citations (PDF)
221New Polymorphs of Ternary Sodium Tellurium Oxides: Hydrothermal Synthesis, Structure Determination, and Characterization of β-Na2Te4O9 and Na2Te2O6·1.5H2O
Inorganic Chemistry, 2014, 53, 10642-10648
4.620Citations (PDF)
222Structural, electrical and electrochemical characteristics of La0.1Sr0.9Co1−xNbxO3−δ as a cathode material for intermediate temperature solid oxide fuel cells
RSC Advances, 2014, 4, 18710-18717
4.427Citations (PDF)
223Effect of polarizable lone pair cations on the second-harmonic generation (SHG) properties of noncentrosymmetric (NCS) Bi2−xYxTeO5(x = 0–0.2)
Dalton Transactions, 2014, 43, 11752
3.023Citations (PDF)
224Preparation and Characterization of (E)- and (Z)-2-(Biphenyl-4-yl)-1-(4-bromophenyl)-1-phenylethene Isomers2.10Citations (PDF)
225New Selenites: Hydrothermal Syntheses, Crystal Structures, and Characterization of Rb3HGa2(OH)2(SeO3)4, Rb3Ga5(SeO3)8(HSeO3)2·0.5H2O, and RbGa(SeO3)2·H2O
Inorganic Chemistry, 2013, 52, 10080-10086
4.616Citations (PDF)
226Y2MoSe3O12 and Y2MoTe3O12: Solid-state synthesis, structure determination, and characterization of two new quaternary mixed metal oxides containing asymmetric coordination environment3.222Citations (PDF)
227Na1.4InTe3.6O9.4: New Variant of a Hexagonal Tungsten Oxide (HTO)-Like Layered Framework Containing Both a Main-Group Cation, In3+, and a Lone-Pair Cation, Te4+
Inorganic Chemistry, 2013, 52, 6236-6238
4.614Citations (PDF)
228Solid-state synthesis, structure, second-harmonic generation, and luminescent properties of noncentrosymmetric BaSi7N10:Eu2+ phosphors5.117Citations (PDF)
229VSb(SeO3)4, First Selenite Containing V3+ Cation: Synthesis, Structure, Characterization, Magnetic Properties, and Calculations
Inorganic Chemistry, 2013, 52, 14224-14230
4.614Citations (PDF)
230Large scale synthesis, second-harmonic generation, and piezoelectric properties of a noncentrosymmetric vanadium phosphate, Li2VPO63.29Citations (PDF)
231New Bismuth Selenium Oxides: Syntheses, Structures, and Characterizations of Centrosymmetric Bi2(SeO3)2(SeO4) and Bi2(TeO3)2(SeO4) and Noncentrosymmetric Bi(SeO3)(HSeO3)
Inorganic Chemistry, 2013, 52, 4097-4103
4.652Citations (PDF)
232New Alkali-Metal Gallium Selenites, AGa(SeO3)2 (A = Li, Na, K, and Cs): Effect of Cation Size on the Framework Structures and Macroscopic Centricities
Inorganic Chemistry, 2013, 52, 5176-5184
4.675Citations (PDF)
233α-ScVSe2O8, β-ScVSe2O8, and ScVTe2O8: New Quaternary Mixed Metal Oxides Composed of Only Second-Order Jahn–Teller Distortive Cations
Inorganic Chemistry, 2013, 52, 11450-11456
4.634Citations (PDF)
234From an Open Framework to a Layered and a Hexagonal Tungsten Oxide Structure: Controlled Transformation Reactions of an Extended Solid-State Material, Cs3Ga7(SeO3)12 to Ga(OH)(SeO3) and KGa3(SeO4)2(OH)6
Inorganic Chemistry, 2013, 52, 12726-12730
4.613Citations (PDF)
235Centrosymmetric [N(CH3)4]2TiF6 vs. noncentrosymmetric polar [C(NH2)3]2TiF6: A hydrogen-bonding effect on the out-of-center distortion of TiF6 octahedra3.229Citations (PDF)
236ZnIO3(OH): a new layered noncentrosymmetric polar iodate – hydrothermal synthesis, crystal structure, and second-harmonic generating (SHG) properties
Dalton Transactions, 2012, 41, 8348
3.036Citations (PDF)
237Second-harmonic generating properties of polar noncentrosymmetric aluminoborate solid solutions, Al5−xGaxBO9 (0.0 ≤x≤ 0.5)
Dalton Transactions, 2012, 41, 3233
3.011Citations (PDF)
238Cation Size Effect on the Framework Structures in a Series of New Alkali-Metal Indium Selenites, AIn(SeO3)2 (A = Na, K, Rb, and Cs)
Inorganic Chemistry, 2012, 51, 8530-8537
4.628Citations (PDF)
239PbMSeO6 (M = Mo and W): New quaternary mixed metal selenites with asymmetric cationic coordination environments
Dalton Transactions, 2012, 41, 2995
3.037Citations (PDF)
240Influence of the Cation Size on the Framework Structures and Space Group Centricities in AMo2O5(SeO3)2 (A = Sr, Pb, and Ba)
Inorganic Chemistry, 2012, 51, 5393-5399
4.693Citations (PDF)
241Structure–Property Relationships in Solid Solutions of Noncentrosymmetric Aurivillius Phases, Bi4–xLaxTi3O12 (x = 0–0.75)
Inorganic Chemistry, 2012, 51, 10402-10407
4.632Citations (PDF)
242Solvothermal synthesis, crystal structure, and second-order nonlinear optical properties of a new noncentrosymmetric gallium-organic framework material, [N(C3H7)4]3Ga3[C6H3(CO2)3]43.28Citations (PDF)
243Chemical compatibility, redox behavior, and electrochemical performance of Nd1−Sr CoO3− cathodes based on Ce1.9Gd0.1O1.95 for intermediate-temperature solid oxide fuel cells
Electrochimica Acta, 2012, 81, 217-223
5.333Citations (PDF)
244Time-Resolved in Situ Neutron Diffraction under Supercritical Hydrothermal Conditions: A Study of the Synthesis of KTiOPO415.027Citations (PDF)
245Effect of the Framework Flexibility on the Centricities in Centrosymmetric In2Zn(SeO3)4 and Noncentrosymmetric Ga2Zn(TeO3)4
Inorganic Chemistry, 2012, 51, 7844-7850
4.649Citations (PDF)
246Bi[NC5H3(CO2)2](OH2)xF (x=1 and 2): New one-dimensional Bi-coordination materials—Reversible hydration and topotactic decomposition to α-Bi2O33.215Citations (PDF)
247Solid State Synthesis, Characterization, and Nonlinear Optical Properties of a Monoclinic Tricalcium Silicate, Ca3SiO52.15Citations (PDF)
248New alkali earth metal–organic frameworks with a very high thermal stability: synthesis, crystal structure, and characterization of AE[NC5H3(CO2)2] (AE = Ba or Sr)
CrystEngComm, 2011, 13, 4599
2.419Citations (PDF)
249Sr2[C6H3(CO2)3(NO3)]·DMF: One-Dimensional Nano-Channel in a New Non-Centrosymmetric Strontium–Organic Framework with High Thermal Stability
Crystal Growth and Design, 2011, 11, 2698-2701
3.431Citations (PDF)
250From Pincers to Steps: Synthesis, Structure, Characterization, and Transformation of a New Helical Calcium−Organic Framework, Ca[NC5H3(CO2)2](H2O)1.5
Crystal Growth and Design, 2011, 11, 930-932
3.427Citations (PDF)
251New Quaternary Tellurite and Selenite: Synthesis, Structure, and Characterization of Centrosymmetric InVTe2O8 and Noncentrosymmetric InVSe2O8
Inorganic Chemistry, 2011, 50, 4473-4480
4.685Citations (PDF)
252A2TiF5·nH2O (A=K, Rb, or Cs; n=0 or 1): Synthesis, structure, characterization, and calculations of three new uni-dimensional titanium fluorides3.26Citations (PDF)
253Spin Dynamics of the S = 1/2 Pyrochlore System?Cu2(OH)3Cl Studied by Using High-frequency ESR0.83Citations (PDF)
254A new layered indium selenium oxychloride material: Synthesis, structure, and characterization of InSeO3Cl
Solid State Sciences, 2010, 12, 2036-2041
3.020Citations (PDF)
255In[NC5H3(CO2)2](OH2)F: A new layered indium-organic framework material (NC5H3(CO2)2=2,6-pyridinedicarboxylate)
Journal of Solid State Chemistry, 2010, 183, 2406-2410
3.22Citations (PDF)
256New large volume hydrothermal reaction cell for studying chemical processes under supercritical hydrothermal conditions using time-resolved in situ neutron diffraction1.513Citations (PDF)
257New Noncentrosymmetric Tellurite Phosphate Material: Synthesis, Characterization, and Calculations of Te2O(PO4)2
Inorganic Chemistry, 2010, 49, 7028-7034
4.697Citations (PDF)
258Anionic templating in a new layered bismuth tellurium oxychloride, Bi3Te4O10Cl5
Dalton Transactions, 2010, 39, 6037
3.029Citations (PDF)
259Lone Pairs as Chemical Scissors in New Antimony Oxychlorides, Sb2ZnO3Cl2 and Sb16Cd8O25Cl14
Inorganic Chemistry, 2010, 49, 2990-2995
4.645Citations (PDF)
260CAU-1 and CAU-2: New tubular alkali metal–organic framework materials, A3[C6H3(CO2)(CO2H0.5)(CO2H)]2 (A = K or Rb)
CrystEngComm, 2010, 12, 1481
2.428Citations (PDF)
261Synthesis of LiCoO2Nanoparticles by a Sonochemical Method under the Multibubble Sonoluminescence Conditions2.17Citations (PDF)
262Hydrothermal Syntheses, Structures, and Characterizations of Two Lanthanide Sulfate Hydrates Materials, La2(SO4)3·H2O and Eu2(SO4)3·4H2O2.113Citations (PDF)
263Syntheses of Mn3O4 and LiMn2O4 nanoparticles by a simple sonochemical method
Materials Letters, 2009, 63, 2201-2204
2.516Citations (PDF)
264Coating of TiO2 nanoparticles with PbS thin films and preparation of PbS nanoparticles using a one-pot sonochemical reaction under the multibubble sonoluminescence conditions
Thin Solid Films, 2009, 517, 6663-6665
1.913Citations (PDF)
265New Variant of Highly Symmetric Layered Perovskite with Coordinated NO3− Ligand: Hydrothermal Synthesis, Structure, and Characterization of Cs2PbCl2(NO3)2
Inorganic Chemistry, 2009, 48, 7368-7372
4.623Citations (PDF)
266New Noncentrosymmetric Material - [N(CH3)4]ZnCl3: Polar Chains of Aligned ZnCl4 Tetrahedra
Inorganic Chemistry, 2009, 48, 8376-8382
4.662Citations (PDF)
267Catalytic dechlorination of polychlorinated biphenyls (PCBs) using amine functionalised titanocenes
Green Chemistry, 2009, 11, 1343
9.15Citations (PDF)
268New Inorganic Helical Chain: Synthesis, Structure, Characterization, and Interconversion of BaGa2O2(OH)4
Inorganic Chemistry, 2009, 48, 1275-1277
4.64Citations (PDF)
269New Polar Oxides: Synthesis, Characterization, Calculations, and Structure−Property Relationships in RbSe2V3O12 and TlSe2V3O12
Chemistry of Materials, 2009, 21, 1654-1662
6.7126Citations (PDF)
270Alignment of Lone Pairs in a New Polar Material: Synthesis, Characterization, and Functional Properties of Li2Ti(IO3)615.0305Citations (PDF)
271Polar or Nonpolar? A+ Cation Polarity Control in A2Ti(IO3)6(A = Li, Na, K, Rb, Cs, Tl)15.0300Citations (PDF)
272Preparation of CuGaS2 thin films by two-stage MOCVD method6.123Citations (PDF)
273Synthesis, structure, and characterization of a new thorium–organic framework material, Th3F5[(C10H14)(CH2CO2)2]3(NO3)
Dalton Transactions, 2008, , 5560
3.052Citations (PDF)
274Polar Hexagonal Tungsten Bronze-Type Oxides: KNbW2O9, RbNbW2O9, and KTaW2O9
Inorganic Chemistry, 2008, 47, 8511-8517
4.671Citations (PDF)
275A kinetic study of the phase conversion of layered cobalt hydroxides7.355Citations (PDF)
276TOF-2:  A Large 1D Channel Thorium Organic Framework15.0138Citations (PDF)
277[(CH3)2NH(CH2)2NH(CH3)2][(UO2)2F2(HPO4)2]: a new organically templated layered uranium phosphate fluoride - synthesis, structure, characterization, and ion-exchange reactions
Dalton Transactions, 2007, , 3325
3.07Citations (PDF)
278Synthesis, Structure, Characterization, and Calculations of Two New Sn2+−W6+−oxides, Sn2WO5 and Sn3WO6
Inorganic Chemistry, 2007, 46, 7005-7011
4.619Citations (PDF)
279Structure and Physical Properties of the Polar Oxysulfide CaZnOS
Inorganic Chemistry, 2007, 46, 2571-2574
4.6141Citations (PDF)
280Hydrothermal synthesis, crystal structure, and characterization of a new pseudo-two-dimensional uranyl oxyfluoride, [N(C2H5)4]2[(UO2)4(OH2)3F10]3.217Citations (PDF)
281Directed Synthesis of Noncentrosymmetric Molybdates Using Composition Space Analysis
Inorganic Chemistry, 2006, 45, 5529-5537
4.670Citations (PDF)
282[N(CH3)4][(UO2)2F5]: A new organically templated open-framework uranium oxide fluoride (MUF-2)7.335Citations (PDF)
283Synthesis, Structure, and Characterization of Novel Two- and Three-Dimensional Vanadates:  Ba2.5(VO2)3(SeO3)4·H2O and La(VO2)3(TeO6)·3H2O
Inorganic Chemistry, 2006, 45, 3602-3605
4.659Citations (PDF)
284Distortions in Octahedrally Coordinated d0Transition Metal Oxides:  A Continuous Symmetry Measures Approach
Chemistry of Materials, 2006, 18, 3176-3183
6.7399Citations (PDF)
285New Layered Uranium Phosphate Fluorides:  Syntheses, Structures, Characterizations, and Ion-Exchange Properties of A(UO2)F(HPO4)·xH2O (A = Cs+, Rb+, K+; x = 0−1)
Inorganic Chemistry, 2006, 45, 10207-10214
4.688Citations (PDF)
286Bulk characterization methods for non-centrosymmetric materials: second-harmonic generation, piezoelectricity, pyroelectricity, and ferroelectricity37.7916Citations (PDF)
287Na2Te3Mo3O16:  A New Molybdenum Tellurite with Second-Harmonic Generating and Pyroelectric Properties
Chemistry of Materials, 2006, 18, 2070-2074
6.7232Citations (PDF)
288Synthesis, structure, and characterization of a new one-dimensional tellurite phosphate, Ba2TeO(PO4)2
Journal of Solid State Chemistry, 2006, 179, 1345-1350
3.246Citations (PDF)
289New d0 Transition Metal Iodates:  Synthesis, Structure, and Characterization of BaTi(IO3)6, LaTiO(IO3)5, Ba2VO2(IO3)4·(IO3), K2MoO2(IO3)4, and BaMoO2(IO3)4·H2O
Inorganic Chemistry, 2005, 44, 2263-2271
4.666Citations (PDF)
290Mixed-Metal Tellurites:  Synthesis, Structure, and Characterization of Na1.4Nb3Te4.9O18 and NaNb3Te4O16
Inorganic Chemistry, 2005, 44, 3919-3925
4.6126Citations (PDF)
291Directed Synthesis of Noncentrosymmetric Molybdates
Crystal Growth and Design, 2005, 5, 1913-1917
3.485Citations (PDF)
292Synthesis of the Thioborate Crystal ZnxBa2B2S5+x(x≈ 0.2) for Second Order Nonlinear Optical Applications
Chemistry of Materials, 2005, 17, 2046-2051
6.738Citations (PDF)
293New Metal Iodates:  Syntheses, Structures, and Characterizations of Noncentrosymmetric La(IO3)3and NaYI4O12and Centrosymmetric β-Cs2I4O11and Rb2I6O15(OH)2·H2O
Inorganic Chemistry, 2005, 44, 9353-9359
4.6126Citations (PDF)
294Powder second-harmonic generation study of (K2O)15(Nb2O5)15(TeO2)70 glass ceramic
Applied Physics Letters, 2004, 85, 938-939
3.031Citations (PDF)
295The Lone-Pair Cation I5+ in a Hexagonal Tungsten Oxide-Like Framework: Synthesis, Structure, and Second-Harmonic Generating Properties of Cs2I4O1114.4177Citations (PDF)
296The Lone-Pair Cation I5+ in a Hexagonal Tungsten Oxide-Like Framework: Synthesis, Structure, and Second-Harmonic Generating Properties of Cs2I4O11
Angewandte Chemie, 2004, 116, 5605-5607
1.433Citations (PDF)
297Synthesis, structure and characterization of two new antimony oxides–LaSb3O9and LaSb5O12: Formation of LaSb5O12from the reaction of LaSb3O9with Sb2O37.318Citations (PDF)
298Synthesis and characterization of two novel mixed metal tellurates: KGaTeO5·H2O and K3GaTe2O8(OH)2·H2O
Dalton Transactions, 2004, , 392-396
3.012Citations (PDF)
299Asymmetric Cationic Coordination Environments in New Oxide Materials:  Synthesis and Characterization of Pb4Te6M10O41(M = Nb5+or Ta5+)
Inorganic Chemistry, 2004, 43, 4248-4253
4.671Citations (PDF)
300Synthesis, Structure, and Characterization of Two New Layered Mixed-Metal Phosphates, BaTeMO4(PO4) (M = Nb5+or Ta5+)
Inorganic Chemistry, 2004, 43, 964-968
4.687Citations (PDF)
301Syntheses, Structures, Second-Harmonic Generating, and Ferroelectric Properties of Tungsten Bronzes:  A6M2M‘8O30(A = Sr2+, Ba2+, or Pb2+; M = Ti4+, Zr4+, or Hf4+; M‘ = Nb5+or Ta5+)
Chemistry of Materials, 2004, 16, 3616-3622
6.790Citations (PDF)
302Syntheses, structures, and second-harmonic generating properties in new quaternary tellurites: A2TeW3O12 (A=K, Rb, or Cs)3.2126Citations (PDF)
303Synthesis, characterization and dielectric properties of new unidimensional quaternary tellurites: LaTeNbO6, La4Te6Nb2O23, and La4Te6Ta2O233.227Citations (PDF)
304Combining Second-Order Jahn−Teller Distorted Cations to Create Highly Efficient SHG Materials:  Synthesis, Characterization, and NLO Properties of BaTeM2O9(M = Mo6+or W6+)15.0483Citations (PDF)
305Hydrothermal Preparation, Structures, and NLO Properties of the Rare Earth Molybdenyl Iodates,RE(MoO2)(IO3)4(OH) [RE= Nd, Sm, Eu]
Inorganic Chemistry, 2003, 42, 457-462
4.6112Citations (PDF)
306Anionic Templating:  Synthesis, Structure, and Characterization of Novel Three-Dimensional Mixed-Metal Oxychlorides Te4M3O15·Cl (M = Nb5+or Ta5+)
Inorganic Chemistry, 2002, 41, 3805-3807
4.638Citations (PDF)
307New Selenites:  Syntheses, Structures, and Characterization of Centrosymmetric Al2(Se2O5)3and Ga2(Se2O5)3and Non-centrosymmetric In2(Se2O5)3
Chemistry of Materials, 2002, 14, 2360-2364
6.768Citations (PDF)
308Structural Modulation of Molybdenyl Iodate Architectures by Alkali Metal Cations in AMoO3(IO3) (A = K, Rb, Cs):  A Facile Route to New Polar Materials with Large SHG Responses15.0339Citations (PDF)
309New One-Dimensional Vanadyl Iodates:  Hydrothermal Preparation, Structures, and NLO Properties of A[VO2(IO3)2] (A = K, Rb) and A[(VO)2(IO3)3O2] (A = NH4, Rb, Cs)
Chemistry of Materials, 2002, 14, 2741-2749
6.7159Citations (PDF)
310Regio- and Stereoselective C−C Bond Formation between Alkynes:  Synthesis of Linear Dienynes from Alkynes
Organometallics, 2002, 21, 4785-4793
2.940Citations (PDF)
311From Linear Inorganic Chains to Helices:  Chirality in the M(pyz)(H2O)2MoO2F4(M = Zn, Cd) Compounds
Inorganic Chemistry, 2002, 41, 4852-4858
4.662Citations (PDF)
312Synthesis, structure and characterization of a new tellurate: NaBiTeO5
Solid State Sciences, 2002, 4, 793-797
3.07Citations (PDF)
313Synthesis and Characterization of Te2SeO7:  A Powder Second-Harmonic-Generating Study of TeO2, Te2SeO7, Te2O5, and TeSeO4
Chemistry of Materials, 2001, 13, 1910-1915
6.7216Citations (PDF)
314New Tellurites:  Syntheses, Structures, and Characterization of K2Te4O9·3.2H2O, KGaTe6O14, and KGaTe2O6·1.8H2O
Chemistry of Materials, 2001, 13, 4278-4284
6.749Citations (PDF)
315SbSbxM1−xO4 (M=NbV or TaV): Solid Solution Behavior and Second-Harmonic Generating Properties3.246Citations (PDF)
316Reaction of an (Alkyl)(alkenyl)(alkynyl)iridium(III) Complex with HCl:  Intramolecular C−C Bond Formation from Alkyl, Alkenyl, and Alkynyl Groups Coordinated to “Ir(CO)(PPh3)2”. H/D Exchange between CH3and DCl
Organometallics, 1999, 18, 4810-4816
2.928Citations (PDF)
317KIn0.33IIITe0.67VITe2IVO7: Zirconolite-like Mixed-Valent Metal Oxide with a 3D Framework
Inorganic Chemistry, 0, 60, 15091-15095
4.62Citations (PDF)
318Synergistic effect of cation substitution and p-type anion doping to improve thermoelectric properties in Zintl phases
0, 5,
3Citations (PDF)
319Exceptional Second Harmonic Generation in Ultraviolet Nonlinear Optical Oxyfluoroniobate Crystals via Structural Fingerprint Optimization of Polar Chains14.417Citations (PDF)
320Efficient Synthesis of Alkoxypyrazole‐ or Pyrazolone‐Fused 1,4‐Naphthoquinones via Ullmann Cyclization and Evaluation of Their Cytotoxicity2.10Citations (PDF)
321Structure–property relationships in noncentrosymmetric solid‐state materials2.11Citations (PDF)
322Five-Membered [C5O5]2– Rings as Birefringence-Active Genes for Ultrabirefringent Crystals15.016Citations (PDF)
323Ultralong and Thermally Enhanced Persistent Luminescence in Printable Recycled Polymers for Advanced Thermal Imaging24.57Citations (PDF)
324Sulfonated Module Aggregation for Ultrahigh Birefringence in Aqueous-Processable Crystals15.017Citations (PDF)
325Tunable bandgap and ultra‐low thermal conductivity of the Sr/Zn co‐substituted <scp> Ca <sub>3</sub> AlAs <sub>3</sub> </scp> ‐type Zintl phase2.10Citations (PDF)
326pH‐Regulated Ring‐Opening/Closing Transformation in Polyoxometalates Enables High‐Performance Nonlinear Optical Crystals1.40Citations (PDF)
327pH‐Regulated Ring‐Opening/Closing Transformation in Polyoxometalates Enables High‐Performance Nonlinear Optical Crystals14.46Citations (PDF)
328Organic π-conjugated units as versatile building blocks for high-performance birefringent crystals7.02Citations (PDF)
329From synthesis to machine learning validation for the thermoelectric Zintl phase Ba 1− x Eu x Zn 2− y Al y Sb 2 9.31Citations (PDF)
330Density-Compensated Polarizability Anisotropy for Record Birefringence in Short-Wavelength Ultraviolet Inorganic Crystals15.03Citations (PDF)
331Polar Antiperovskite Oxides: Promising Mid-Infrared Nonlinear Optical Materials with Strong Second-Harmonic Generation
Chemistry of Materials, 0, 38, 3649-3656
6.70Citations (PDF)
332From Coplanarity to Coaxiality: A Linearity-Oriented Design Paradigm for Ultrahigh Ultraviolet Birefringent Inorganic Crystals15.00Citations (PDF)
333Breaking Inversion Symmetry via Vanadium Coordination Engineering in Bismuth Vanadium Selenites
Small, 0, ,
11.50Citations (PDF)
334Bridging Machine Learning and Zintl Phase Thermoelectric Materials: The Ca 9– x Eu x Zn 4.5– y Cu y Sb 9
Chemistry of Materials, 0, 38, 5698-5710
6.70Citations (PDF)
335Hybridizing π-conjugated organic systems with tetrahedral units: a design paradigm for advanced UV nonlinear optical materials7.10Citations (PDF)