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215 peer-reviewed articles • 8,159 peer-reviewed citations • Sorted by year • Download PDF (PDF by citations)
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1Combination of Phenylsilsesquioxane and Acetate Ligands as an Approach to a Record High Nuclear Cu13Na2‐Cage. Synthesis, Unique Structure, and Catalytic Activity3.45Citations (PDF)
2Ligand-Targeted Ag9 Cluster Self-Cascade Antioxidants for Enhanced Reactive Oxygen Species Clearance in the Treatment of Inflammatory Bowel Disease
Nano Letters, 2025, 25, 2960-2967
8.711Citations (PDF)
3Gram-Scale Synthesis of an Ultrastable 38-Nuclei Copper(I) Alkynide Nanocluster for Unraveling Bifunctional Photocatalysis
Nano Letters, 2025, 25, 9132-9138
8.717Citations (PDF)
4Photoswitchable Arylazopyrazole-Functionalized Ag8 Nanoclusters with Light-Modulated Photoluminescence15.011Citations (PDF)
5All-catecholate-stabilized black titanium-oxo clusters for efficient photothermal conversion
Chemical Science, 2024, 15, 2655-2664
7.129Citations (PDF)
6Assembly of air-stable copper(I) alkynide nanoclusters assisted by tripodal polydentate phosphoramide ligands
Nature Synthesis, 2024, 3, 517-526
18.157Citations (PDF)
7Thiacalix[4]arene-Protected Silver Nanoclusters Encapsulating Different Two-Electron Superatom Oligomers
Nano Letters, 2024, 24, 458-465
8.713Citations (PDF)
8Arylgold nanoclusters: Phenyl-stabilized Au 44 with thermal-controlled NIR single/dual-channel phosphorescence
Science Advances, 2024, 10,
10.949Citations (PDF)
9Solvent-Mediated Hetero/Homo-Phase Crystallization of Copper Nanoclusters and Superatomic Kernel-Related NIR Phosphorescence15.036Citations (PDF)
10Chiral Ligand‐Concentration Mediating Asymmetric Transformations of Silver Nanoclusters: NIR‐II Circularly Polarized Phosphorescence Lighting14.435Citations (PDF)
11Chiral Ligand‐Concentration Mediating Asymmetric Transformations of Silver Nanoclusters: NIR‐II Circularly Polarized Phosphorescence Lighting
Angewandte Chemie, 2024, 136,
1.40Citations (PDF)
12Calix[6]arene-functionalized titanium-oxo clusters for photocatalytic cycloaddition of carbon dioxide to epoxides
Inorganic Chemistry Frontiers, 2024, 11, 3755-3764
6.314Citations (PDF)
13Advancements in Atomically Precise Nanocluster Protected by Thiacalix[4]arene
Advanced Materials, 2024, 36,
24.542Citations (PDF)
14Regulating the assembly and expansion of the silver cluster from the Ag37to Ag46nanowheel driven by heteroanions
Chemical Science, 2023, 14, 1138-1144
7.131Citations (PDF)
15Highly Effective Hybrid Copper(I) Iodide Cluster Emitter with Negative Thermal Quenched Phosphorescence for X‐Ray Imaging14.4133Citations (PDF)
16Highly Effective Hybrid Copper(I) Iodide Cluster Emitter with Negative Thermal Quenched Phosphorescence for X‐Ray Imaging
Angewandte Chemie, 2023, 135,
1.413Citations (PDF)
17The tail of imidazole regulated the assembly of two robust sandwich-type polyoxotungstate-based open frameworks with efficient visible-white-light-driven catalytic oxidation of sulfides
Inorganic Chemistry Frontiers, 2023, 10, 1465-1474
6.327Citations (PDF)
18Monitoring the Activation of Open Metal Sites in [FexM3–x(μ3-O)] Cluster-Based Metal–Organic Frameworks by Single-Crystal X-ray Diffraction15.052Citations (PDF)
19Two triplet emitting states in one emitter: Near-infrared dual-phosphorescent Au 20 nanocluster
Science Advances, 2023, 9,
10.9109Citations (PDF)
20Solvent-Mediated Separation and Reversible Transformation of 1D Supramolecular Polymorphs Built from [W10O32]4– Templated 48-Nuclei Silver(I) Cluster15.080Citations (PDF)
21Dicarboxylic Acids Induced Tandem Transformation of Silver Nanocluster15.068Citations (PDF)
22A route to metalloligands consolidated silver nanoclusters by grafting thiacalix[4]arene onto polyoxovanadates13.748Citations (PDF)
23Dynamic and transformable Cu12 cluster-based C-H···π-stacked porous supramolecular frameworks13.747Citations (PDF)
24In Situ Capture of a Ternary Supramolecular Cluster in a 58-Nuclei Silver Supertetrahedron
CCS Chemistry, 2022, 4, 1788-1795
8.844Citations (PDF)
25Supramolecular Self-Assembly of Atomically Precise Silver Nanoclusters with Chiral Peptide for Temperature Sensing and Detection of Arginine
Nanomaterials, 2022, 12, 424
4.037Citations (PDF)
26Solvent‐Controlled Condensation of [Mo 2 O 5 (PTC4A) 2 ] 6− Metalloligand in Stepwise Assembly of Hexagonal and Rectangular Ag 18 Nanoclusters14.455Citations (PDF)
27Solvent‐Controlled Condensation of [Mo 2 O 5 (PTC4A) 2 ] 6− Metalloligand in Stepwise Assembly of Hexagonal and Rectangular Ag 18 Nanoclusters
Angewandte Chemie, 2022, 134,
1.49Citations (PDF)
28Stepwise Assembly of Ag42 Nanocalices Based on a MoVI-Anchored Thiacalix[4]arene Metalloligand
ACS Nano, 2022, 16, 4500-4507
15.346Citations (PDF)
29Nuclearity enlargement from [PW9O34@Ag51] to [(PW9O34)2@Ag72] and 2D and 3D network formation driven by bipyridines13.764Citations (PDF)
30Molecular Dynamic Simulations of Bromodomain and Extra-Terminal Protein 4 Bonded to Potent Inhibitors
Molecules, 2022, 27, 118
4.210Citations (PDF)
31Circularly Polarized Phosphorescence from Cocrystallization of Atomic Precise Silver Nanoclusters with Tartaric Acid7.041Citations (PDF)
32Fabrication of a novel nano-biosensor for efficient colorimetric determination of uric acid2.220Citations (PDF)
33An Ultrastable 155‐Nuclei Silver Nanocluster Protected by Thiacalix[4]arene and Cyclohexanethiol for Photothermal Conversion14.478Citations (PDF)
34An Ultrastable 155‐Nuclei Silver Nanocluster Protected by Thiacalix[4]arene and Cyclohexanethiol for Photothermal Conversion
Angewandte Chemie, 2022, 134,
1.45Citations (PDF)
35Solvent-Induced Isomeric Cu13 Nanoclusters: Chlorine to Copper Charge Transfer Boosting Molecular Oxygen Activation in Sulfide Selective Oxidation
ACS Nano, 2022, 16, 9598-9607
15.383Citations (PDF)
36Synergistic Multiple Bonds Induced Dynamic Self-Assembly of Silver Nanoclusters into Lamellar Frameworks with Tailored Luminescence
Chemistry of Materials, 2022, 34, 8013-8021
6.740Citations (PDF)
37A classical [V10O28]6− anion templated high-nuclearity silver thiolate cluster
Chemical Communications, 2022, 58, 9234-9237
3.415Citations (PDF)
38Bicarbonate insertion triggered self-assembly of chiral octa-gold nanoclusters into helical superstructures in the crystalline state
Chemical Science, 2022, 13, 10523-10531
7.128Citations (PDF)
39Sulfide Boosting Near-Unity Photoluminescence Quantum Yield of Silver Nanocluster15.0122Citations (PDF)
40Recent advances in the asymmetrical templation effect of polyoxometalate in silver clusters
Polyoxometalates, 2022, 1, 9140010
10.537Citations (PDF)
41A 34‐Electron Superatom Ag78 Cluster with Regioselective Ternary Ligands Shells and Its 2D Rhombic Superlattice Assembly14.463Citations (PDF)
42Focusing characteristics of optical vortex passing through a Fresnel zone plate0.94Citations (PDF)
43Semitransparent organic solar cells exhibiting 13.02% efficiency and 20.2% average visible transmittance9.3131Citations (PDF)
44Silica–Organometallic One-Dimensional Hybrid Employing a Ag−πC═C Bond Connecting Alternating Ag4(NO3)4 and Octavinylsilsesquioxane
Inorganic Chemistry, 2021, 60, 2899-2904
4.67Citations (PDF)
45Facile Fabrication of a Novel Copper Nanozyme for Efficient Dye Degradation
ACS Omega, 2021, 6, 6284-6291
4.237Citations (PDF)
46Effects of mechanochemical activation on the structural and electrical properties of orthorhombic LuFeO 3 ceramics3.77Citations (PDF)
47Precise Implantation of an Archimedean Ag@Cu12 Cuboctahedron into a Platonic Cu4Bis(diphenylphosphino)hexane6 Tetrahedron
ACS Nano, 2021, 15, 8733-8741
15.345Citations (PDF)
48Keplerate Ag192 Cluster with 6 Silver and 14 Chalcogenide Octahedral and Tetrahedral Shells15.061Citations (PDF)
49Revealing the chirality origin and homochirality crystallization of Ag14 nanocluster at the molecular level13.7101Citations (PDF)
50Anionic passivation layer-assisted trapping of an icosahedral Ag13 kernel in a truncated tetrahedral Ag89 nanocluster
Science China Chemistry, 2021, 64, 1482-1486
8.344Citations (PDF)
51Supramolecular Chirality from Hierarchical Self-Assembly of Atomically Precise Silver Nanoclusters Induced by Secondary Metal Coordination
ACS Nano, 2021, 15, 15910-15919
15.393Citations (PDF)
52Increases in Genetic Diversity of Weedy Rice Associated with Ambient Temperatures and Limited Gene Flow
Biology, 2021, 10, 71
2.85Citations (PDF)
53A 34‐Electron Superatom Ag78 Cluster with Regioselective Ternary Ligands Shells and Its 2D Rhombic Superlattice Assembly
Angewandte Chemie, 2021, 133, 4277-4283
1.411Citations (PDF)
54Luminescent Hydrogel Based on Silver Nanocluster/Malic Acid and Its Composite Film for Highly Sensitive Detection of Fe3+
Gels, 2021, 7, 192
4.816Citations (PDF)
55Observation of a bcc-like framework in polyhydrido copper nanoclusters
Nanoscale, 2021, 13, 19642-19649
5.022Citations (PDF)
56Janus Cluster: Asymmetric Coverage of a Ag43 Cluster on the Symmetric Preyssler P5W30 Polyoxometalate
Chemistry of Materials, 2021, 33, 9708-9714
6.763Citations (PDF)
57Structural rearrangement of Ag60 nanocluster endowing different luminescence performances2.88Citations (PDF)
58Metal–Organic Gels from Silver Nanoclusters with Aggregation‐Induced Emission and Fluorescence‐to‐Phosphorescence Switching14.4196Citations (PDF)
59Recent Progress in Inorganic Anions Templated Silver Nanoclusters: Synthesis, Structures and Properties
Chemical Record, 2020, 20, 389-402
6.791Citations (PDF)
60Metal–Organic Gels from Silver Nanoclusters with Aggregation‐Induced Emission and Fluorescence‐to‐Phosphorescence Switching
Angewandte Chemie, 2020, 132, 10008-10013
1.414Citations (PDF)
61The design and characterization of a hypersensitive glucose sensor: two enzymes co-fixed on a copper phosphate skeleton5.512Citations (PDF)
62Innentitelbild: A Sodalite‐Type Silver Orthophosphate Cluster in a Globular Silver Nanocluster (Angew. Chem. 31/2020)
Angewandte Chemie, 2020, 132, 12646-12646
1.40Citations (PDF)
63A Sodalite‐Type Silver Orthophosphate Cluster in a Globular Silver Nanocluster
Angewandte Chemie, 2020, 132, 12759-12763
1.418Citations (PDF)
64Over 15.7% Efficiency of Ternary Organic Solar Cells by Employing Two Compatible Acceptors with Similar LUMO Levels
Small, 2020, 16,
11.563Citations (PDF)
65New protective ligands for atomically precise silver nanoclusters
Dalton Transactions, 2020, 49, 5406-5415
3.052Citations (PDF)
66Polymorphism in Atomically Precise Cu23 Nanocluster Incorporating Tetrahedral [Cu4]0 Kernel15.0174Citations (PDF)
67A Keplerian Ag90 nest of Platonic and Archimedean polyhedra in different symmetry groups13.782Citations (PDF)
68pH-guided self-assembly of silver nanoclusters with aggregation-induced emission for rewritable fluorescent platform and white light emitting diode application9.971Citations (PDF)
69A Polyoxochromate Templated 56-Nuclei Silver Nanocluster
Inorganic Chemistry, 2020, 59, 3004-3011
4.616Citations (PDF)
70Activity adaptability of a DhHP-6 peroxidase-mimic in wide pH and temperature ranges and solvent media4.06Citations (PDF)
71A hierarchically assembled 88-nuclei silver-thiacalix[4]arene nanocluster13.7122Citations (PDF)
72Self-Assembly-Driven Aggregation-Induced Emission of Silver Nanoclusters for Light Conversion and Temperature Sensing
ACS Applied Nano Materials, 2020, 3, 2038-2046
5.369Citations (PDF)
73An Octanuclear Cobalt Cluster Protected by Macrocyclic Ligand: In Situ Ligand-Transformation-Assisted Assembly and Single-Molecule Magnet Behavior
Inorganic Chemistry, 2020, 59, 5683-5693
4.654Citations (PDF)
74A Dual-Protein Cascade Reaction for the Regioselective Synthesis of Quinoxalines
Organic Letters, 2020, 22, 3900-3904
4.848Citations (PDF)
75A Sodalite‐Type Silver Orthophosphate Cluster in a Globular Silver Nanocluster14.457Citations (PDF)
76Carbonate–Water Supramolecule Trapped in Silver Nanoclusters Encapsulating Unprecedented Ag <sub>11</sub> Kernel
CCS Chemistry, 2020, 2, 663-672
8.85Citations (PDF)
77Tatarinan T, an α‐asarone‐derived lignin, attenuates osteoclastogenesis induced by RANKL via the inhibition of NFATc1/c‐Fos expression
Cell Biology International, 2019, 43, 1471-1482
2.96Citations (PDF)
78Hierarchical multi-shell 66-nuclei silver nanoclusters trapping subvalent Ag6kernels
Chemical Communications, 2019, 55, 10296-10299
3.429Citations (PDF)
79Chalcogens-Induced Ag6Z4@Ag36 (Z = S or Se) Core–Shell Nanoclusters: Enlarged Tetrahedral Core and Homochiral Crystallization15.0101Citations (PDF)
80Unusual fcc-structured Ag10 kernels trapped in Ag70 nanoclusters
Chemical Science, 2019, 10, 564-568
7.185Citations (PDF)
81Amphiphilicity Regulation of AgI Nanoclusters: Self‐Assembly and Its Application as a Luminescent Probe
Chemistry - A European Journal, 2019, 25, 4713-4721
3.425Citations (PDF)
82Enclosing classical polyoxometallates in silver nanoclusters
Nanoscale, 2019, 11, 10927-10931
5.040Citations (PDF)
83Core Modulation of 70‐Nuclei Core‐Shell Silver Nanoclusters
Angewandte Chemie, 2019, 131, 6342-6345
1.420Citations (PDF)
84Carboxylic acid stimulated silver shell isomerism in a triple core–shell Ag84 nanocluster
Chemical Science, 2019, 10, 4862-4867
7.191Citations (PDF)
85Efficient Degradation of Gas-Phase Toluene by Ozone-Assisted Photocatalytic Oxidation on TiO2/Graphene Composites
Catalysis Letters, 2019, 149, 2739-2748
2.08Citations (PDF)
86Innentitelbild: Core Modulation of 70‐Nuclei Core‐Shell Silver Nanoclusters (Angew. Chem. 19/2019)
Angewandte Chemie, 2019, 131, 6168-6168
1.40Citations (PDF)
87Design and Characterization of a Novel Artificial Peroxidase
Catalysts, 2019, 9, 168
3.76Citations (PDF)
88An Improved Analysis Method for Organic Rankine Cycles Based on Radial-Inflow Turbine Efficiency Prediction2.16Citations (PDF)
89Core Modulation of 70‐Nuclei Core‐Shell Silver Nanoclusters14.472Citations (PDF)
90Semitransparent polymer solar cells with 9.06% efficiency and 27.1% average visible transmittance obtained by employing a smart strategy9.3110Citations (PDF)
91An Extended AgI Cluster‐Based Framework Solid: Silver‐Thiolate Cluster Linked Polyoxometalate Including AgI···H–C Anagostic Interactions1.816Citations (PDF)
92Different Silver Nanoparticles in One Crystal: Ag210(iPrPhS)71(Ph3P)5Cl and Ag211(iPrPhS)71(Ph3P)6Cl
Angewandte Chemie, 2019, 131, 201-205
1.434Citations (PDF)
93Self‐Assembly of A Novel Ag48 Cluster Encapsulating an Unprecedented [Mo8O28]8− Anion Template
Israel Journal of Chemistry, 2019, 59, 280-285
2.09Citations (PDF)
94Different Silver Nanoparticles in One Crystal: Ag210(iPrPhS)71(Ph3P)5Cl and Ag211(iPrPhS)71(Ph3P)6Cl14.4135Citations (PDF)
95A novel 58-nuclei silver nanowheel encapsulating a subvalent Ag64+ kernel
Science China Chemistry, 2019, 63, 16-20
8.335Citations (PDF)
96Investigation of the pro-apoptotic effects of arbutin and its acetylated derivative on murine melanoma cells4.433Citations (PDF)
97Fabrication of a nano-biocatalyst for regioselective acylation of arbutin4.915Citations (PDF)
98A giant 90-nucleus silver cluster templated by hetero-anions
Chemical Communications, 2018, 54, 4461-4464
3.462Citations (PDF)
99Benzoate‐Induced High‐Nuclearity Silver Thiolate Clusters
Chemistry - A European Journal, 2018, 24, 4967-4972
3.437Citations (PDF)
100Anisotropic Assembly of Ag52 and Ag76 Nanoclusters15.0199Citations (PDF)
101Small size yet big action: a simple sulfate anion templated a discrete 78-nuclearity silver sulfur nanocluster with a multishell structure
Chemical Communications, 2018, 54, 2361-2364
3.435Citations (PDF)
102pH-Responsive Nanovesicles with Enhanced Emission Co-Assembled by Ag(I) Nanoclusters and Polyethyleneimine as a Superior Sensor for Al3+8.0106Citations (PDF)
103Controllable all‐fiber generation/conversion of circularly polarized orbital angular momentum beams using long period fiber gratings
Nanophotonics, 2018, 7, 287-293
6.2106Citations (PDF)
104Johnson Solids: Anion‐Templated Silver Thiolate Clusters Capped by Sulfonate
Chemistry - A European Journal, 2018, 24, 1640-1650
3.480Citations (PDF)
105Elimination‐Fusion Self‐Assembly of a Nanometer‐Scale 72‐Nucleus Silver Cluster Caging a Pair of [EuW10O36]9− Polyoxometalates
Chemistry - A European Journal, 2018, 24, 1998-2003
3.460Citations (PDF)
106Realizing enhanced luminescence of silver nanocluster–peptide soft hydrogels by PEI reinforcement
Soft Matter, 2018, 14, 8352-8360
2.619Citations (PDF)
107Tatarinan N inhibits osteoclast differentiation through attenuating NF-κB, MAPKs and Ca2+-dependent signaling4.220Citations (PDF)
108Preparation of a Flower-Like Immobilized D-Psicose 3-Epimerase with Enhanced Catalytic Performance
Catalysts, 2018, 8, 468
3.746Citations (PDF)
109Deciphering synergetic core-shell transformation from [Mo6O22@Ag44] to [Mo8O28@Ag50]13.7153Citations (PDF)
110An Improved Method to Encapsulate Laccase from Trametes versicolor with Enhanced Stability and Catalytic Activity
Catalysts, 2018, 8, 286
3.724Citations (PDF)
111Application of dual-enzyme nanoflower in the epoxidation of alkenes
Process Biochemistry, 2018, 74, 103-107
3.932Citations (PDF)
112Synthesis of functionalized 4H-Chromenes catalyzed by lipase immobilized on magnetic nanoparticles4.912Citations (PDF)
113Trapping an octahedral Ag6 kernel in a seven-fold symmetric Ag56 nanowheel13.7151Citations (PDF)
114Regioselective acylation of resveratrol catalyzed by lipase under microwave4.924Citations (PDF)
115Three Silver Nests Capped by Thiolate/Phenylphosphonate
Chemistry - A European Journal, 2018, 24, 15096-15103
3.421Citations (PDF)
116[Ag&lt;sub&gt;25&lt;/sub&gt;(SC&lt;sub&gt;6&lt;/sub&gt;H&lt;sub&gt;4&lt;/sub&gt;Pr&lt;i&gt;&lt;sup&gt;i&lt;/sup&gt;&lt;/i&gt;)&lt;sub&gt;18&lt;/sub&gt;(dppp)&lt;sub&gt;6&lt;/sub&gt;](CF&lt;sub&gt;3&lt;/sub&gt;SO&lt;sub&gt;3&lt;/sub&gt;)&lt;sub&gt;7&lt;/sub&gt;&amp;#183;CH&lt;sub&gt;3&lt;/sub&gt;CN (HSC&lt;sub&gt;6&lt;/sub&gt;H&lt;sub&gt;4&lt;/sub&gt;Pr&lt;i&gt;&lt;sup&gt;i&lt;/sup&gt;&lt;/i&gt; = 4-&lt;i&gt;t&lt;/i&gt;-isopropylthiophenol, and dppp = 1, 3-bis(diphenyphosphino)propane) Cluster Containing a S5.42Citations (PDF)
117Anion‐Templated Nanosized Silver Alkynyl Clusters: Cluster Engineering and Solution Behavior
Chemistry - A European Journal, 2017, 23, 3432-3437
3.442Citations (PDF)
118Anion-templated nanosized silver clusters protected by mixed thiolate and diphosphine
Nanoscale, 2017, 9, 3601-3608
5.083Citations (PDF)
119Synthesis of dihydropyrano[4,3-b]pyranes via a multi-component reaction catalyzed by lipase4.916Citations (PDF)
120A superior fluorescent sensor for Al3+ and UO22+ based on a Co(ii) metal–organic framework with exposed pyrimidyl Lewis base sites
Journal of Materials Chemistry A, 2017, 5, 13079-13085
9.3330Citations (PDF)
121Assembly of silver Trigons into a buckyball-like Ag 180 nanocage7.5207Citations (PDF)
122Hierarchical Nanostructures Self-Assembled by Polyoxometalate and Alkylamine for Photocatalytic Degradation of Dye
Langmuir, 2017, 33, 13242-13251
3.636Citations (PDF)
123A Water-Stable Cl@Ag14 Cluster Based Metal–Organic Open Framework for Dichromate Trapping and Bacterial Inhibition
Inorganic Chemistry, 2017, 56, 11891-11899
4.667Citations (PDF)
124Silver–Sulfur Hybrid Supertetrahedral Clusters: The Hitherto Missing Members in the Metal–Chalcogenide Tetrahedral Clusters
Chemistry - A European Journal, 2017, 23, 14420-14424
3.420Citations (PDF)
125Coupling Characteristics of Selective-Infiltration-Based Locally Tapered Photonic Crystal Fiber1.80Citations (PDF)
126FFT Algorithm-Assisted Polarimetric Twist Sensor1.87Citations (PDF)
127Self-assembly of water-soluble silver nanoclusters: superstructure formation and morphological evolution
Nanoscale, 2017, 9, 19191-19200
5.073Citations (PDF)
128Self-Assembly of Peptide-Polyoxometalate Hybrid Sub-Micrometer Spheres for Photocatalytic Degradation of Methylene Blue
Journal of Physical Chemistry B, 2017, 121, 10566-10573
2.732Citations (PDF)
129Double telecom band thermo-optic switch based on dual-line filled photonic liquid crystal fibres
Liquid Crystals, 2017, 44, 479-483
2.314Citations (PDF)
130Single Longitudinal Mode Optofluidic Microring Laser Based on a Hollow-Core Microstructured Optical Fiber
IEEE Photonics Journal, 2017, 9, 1-10
1.87Citations (PDF)
131A mild and efficient Dakin reaction mediated by lipase4.920Citations (PDF)
132Lipase-Catalyzed Synthesis of Indolyl 4H-Chromenes via a Multicomponent Reaction in Ionic Liquid
Catalysts, 2017, 7, 185
3.727Citations (PDF)
133Using Laccases in the Nanoflower to Synthesize Viniferin
Catalysts, 2017, 7, 188
3.730Citations (PDF)
134A Novel Oxidation of Salicyl Alcohols Catalyzed by Lipase
Catalysts, 2017, 7, 354
3.711Citations (PDF)
135Thermo-Economic Performance Analysis of a Regenerative Superheating Organic Rankine Cycle for Waste Heat Recovery
Energies, 2017, 10, 1593
2.928Citations (PDF)
136Coupled Model of Heat and Mass Balance for Droplet Growth in Wet Steam Non-Equilibrium Homogeneous Condensation Flow
Energies, 2017, 10, 2033
2.916Citations (PDF)
137Lipase-Mediated Amidation of Anilines with 1,3-Diketones via C–C Bond Cleavage
Catalysts, 2017, 7, 115
3.715Citations (PDF)
138Synthesis of 2-Ethylhexyl Palmitate Catalyzed by Enzyme Under Microwave2.920Citations (PDF)
139Synthesis, structures and luminescence of silver (I) thiolate nanoclusters based on anion templates
Scientia Sinica Chimica, 2017, 47, 695-704
0.55Citations (PDF)
140Ultrasound-Assisted Enantioselective Esterification of Ibuprofen Catalyzed by a Flower-Like Nanobioreactor
Molecules, 2016, 21, 565
4.213Citations (PDF)
141Chemoenzymatic Synthesis of α‐­Cyano Epoxides by a Tandem‐­Knoevenagel–Epoxidation Reaction2.313Citations (PDF)
142Multifaceted Bicubane Co4 Clusters: Magnetism, Photocatalytic Oxygen Evolution, and Electrical Conductivity1.817Citations (PDF)
143Ultrasound promoted enantioselective transesterification of 3-hydroxy-3-(2-thienyl) propanenitrile catalyzed by lipase4.92Citations (PDF)
144Octanuclear Ni(ii) cubes based on halogen-substituted pyrazolates: synthesis, structure, electrochemistry and magnetism
CrystEngComm, 2016, 18, 3462-3471
2.426Citations (PDF)
145pH-Controlled assembly of two novel Dawson-sandwiched clusters involving the in situ reorganization of trivacant α-[P2W15O56]12− into divacant α-[P2W16O57]8−
Dalton Transactions, 2016, 45, 8404-8411
3.026Citations (PDF)
146Near-Infrared Emitters: Stepwise Assembly of Two Heteropolynuclear Clusters with Tunable AgI:ZnII Ratio
Inorganic Chemistry, 2016, 55, 4757-4763
4.637Citations (PDF)
147A lipase–glucose oxidase system for the efficient oxidation of N-heteroaromatic compounds and tertiary amines
Green Chemistry, 2016, 18, 3518-3521
9.127Citations (PDF)
148Gold-doped silver nanocluster [Au3Ag38(SCH2Ph)24X5]2−(X = Cl or Br)
Nanoscale, 2016, 8, 18905-18911
5.086Citations (PDF)
149A Pyridazine-Bridged Sandwiched Cluster Incorporating Planar Hexanuclear Cobalt Ring and Bivacant Phosphotungstate
Inorganic Chemistry, 2016, 55, 9006-9011
4.656Citations (PDF)
150Amino acids-incorporated nanoflowers with an intrinsic peroxidase-like activity3.4110Citations (PDF)
151Strong Spatial Confinement of Terahertz Wave inside Femtosecond Laser Filament
ACS Photonics, 2016, 3, 2338-2343
6.039Citations (PDF)
152Structure advantage and peroxidase activity enhancement of deuterohemin-peptide–inorganic hybrid flowers
RSC Advances, 2016, 6, 104265-104272
4.424Citations (PDF)
153Beyond Clusters: Supramolecular Networks Self‐Assembled from Nanosized Silver Clusters and Inorganic Anions
Chemistry - A European Journal, 2016, 22, 6830-6836
3.4128Citations (PDF)
154Kagóme Cobalt(II)‐Organic Layers as Robust Scaffolds for Highly Efficient Photocatalytic Oxygen Evolution
ChemSusChem, 2016, 9, 1146-1152
6.218Citations (PDF)
155Immobilization of Lactobacillus rhamnosus in mesoporous silica-based material: An efficiency continuous cell-recycle fermentation system for lactic acid production2.853Citations (PDF)
156Impacts of daily intakes on the isomeric profiles of perfluoroalkyl substances (PFASs) in human serum
Environment International, 2016, 89-90, 62-70
10.270Citations (PDF)
157Microporous Cd(II) metal-organic framework as fluorescent sensor for nitroaromatic explosives at the sub-ppm level4.178Citations (PDF)
158Robust Cluster Building Unit: Icosanuclear Heteropolyoxocopperate Templated by Carbonate
Chemistry - A European Journal, 2015, 21, 18847-18854
3.459Citations (PDF)
159Parameter designing to improve the energy efficiency of quantum dot semiconductor optical amplifier1.00Citations (PDF)
160A Green Chemoenzymatic Process for the Synthesis of Azoxybenzenes
ChemCatChem, 2015, 7, 3450-3453
3.634Citations (PDF)
161Microwave-Assisted Resolution of α-Lipoic Acid Catalyzed by an Ionic Liquid Co-Lyophilized Lipase
Molecules, 2015, 20, 9949-9960
4.29Citations (PDF)
162An efficient condensation of substituted salicylaldehyde and malononitrile catalyzed by lipase under microwave irradiation
RSC Advances, 2015, 5, 57122-57126
4.417Citations (PDF)
163Highly efficient and regioselective acylation of arbutin catalyzed by lipase from Candida sp.
Process Biochemistry, 2015, 50, 789-792
3.912Citations (PDF)
164All-optical repetition rate multiplication of pseudorandom bit sequences by employing power coupler and equalizer
Optical Engineering, 2015, 54, 106111
0.90Citations (PDF)
165A green and one-pot synthesis of benzo[g]chromene derivatives through a multi-component reaction catalyzed by lipase
RSC Advances, 2015, 5, 5213-5216
4.453Citations (PDF)
166Kinetic resolution of (R, S)‐2‐(2‐chloro‐1‐hydroxyethyl) thiophene via immobilizing lipase from Alcaligenes sp. onto magnetic nanoparticles2.78Citations (PDF)
167Magnetic and Dielectric Properties in Multiferroic Y-type Hexaferrite1.26Citations (PDF)
168Cloning, Expression and Characterization of a Novel Thermophilic Polygalacturonase from Caldicellulosiruptor bescii DSM 67254.428Citations (PDF)
169Enzymatic resolution of ibuprofen in an organic solvent under ultrasound irradiation3.55Citations (PDF)
170Magnetocaloric effect in multiferroic Y-type hexaferrite Ba0.5Sr1.5Zn2(Fe0.92Al0.08)12O22
AIP Advances, 2014, 4,
1.224Citations (PDF)
171Lipase-catalyzed Knoevenagel condensation between α,β-unsaturated aldehydes and active methylene compounds
Chinese Chemical Letters, 2014, 25, 802-804
7.525Citations (PDF)
172Resolution of 1,1,1-trifluoro-2-octanol by Pseudomonas sp. lipase encapsulated in aggregated silica nanoparticles
RSC Advances, 2014, 4, 6103
4.42Citations (PDF)
173Rational design of a rapid fluorescent approach for detection of inorganic fluoride in MeCN–H2O: a new fluorescence switch based on N-aryl-1,8-naphthalimide
New Journal of Chemistry, 2014, 38, 884-888
2.443Citations (PDF)
174Enantioselective transesterification of (R,S)-2-pentanol catalyzed by a new flower-like nanobioreactor
RSC Advances, 2014, 4, 33998-34002
4.430Citations (PDF)
175Lipase catalyzed synthesis of 3,3′-(arylmethylene)bis(2-hydroxynaphthalene-1,4-dione)
RSC Advances, 2014, 4, 35686-35689
4.428Citations (PDF)
176A new method for the enamination of 1,3-dicarbonyl compounds catalyzed by laccase in water
RSC Advances, 2014, 4, 19512-19515
4.48Citations (PDF)
177Enzyme catalytic promiscuity: lipase catalyzed synthesis of substituted 2H-chromenes by a three-component reaction
RSC Advances, 2014, 4, 25633
4.440Citations (PDF)
178Terahertz imaging with sub-wavelength resolution by femtosecond laser filament in air3.473Citations (PDF)
179Effect of Candesartan cilexetil as a sensitive and effective inhibitor of SHP-1 on insulin signaling pathway2.71Citations (PDF)
180Improving the properties of β-galactosidase from Aspergillus oryzae via encapsulation in aggregated silica nanoparticles
New Journal of Chemistry, 2013, 37, 3793
2.414Citations (PDF)
181Enantioselective transesterification ofN-hydroxymethyl vince lactam catalyzed by lipase under ultrasound irradiation1.96Citations (PDF)
182Resolution of N‐hydroxymethyl vince lactam catalyzed by lipase in organic solvent2.713Citations (PDF)
183Polyanion modulated evolution of perovskite BiFeO3 microspheres to microcubes by a microwave assisted hydrothermal method
Journal of Materials Research, 2013, 28, 1498-1504
2.512Citations (PDF)
184Enantioselective Esterification of Ibuprofen under Microwave Irradiation
Molecules, 2013, 18, 5472-5481
4.29Citations (PDF)
185Synthesis of Triptorelin Lactate Catalyzed by Lipase in Organic Media4.40Citations (PDF)
186Combining the Physical Adsorption Approach and the Covalent Attachment Method to Prepare a Bifunctional Bioreactor4.411Citations (PDF)
187Construction of hydroxypropyl-β-cyclodextrin copolymer nanoparticles and targeting delivery of paclitaxel2.417Citations (PDF)
188A rationally-designed synergetic polypyrrole/graphene bilayer actuator7.368Citations (PDF)
189Immobilization of Laccase for Oxidative Coupling of Trans-Resveratrol and Its Derivatives4.435Citations (PDF)
190Immobilization of Pseudomonas fluorescens Lipase onto Magnetic Nanoparticles for Resolution of 2-Octanol2.940Citations (PDF)
191Ultrasound Irradiation Promoted Enzymatic Transesterification of (R/S)-1-Chloro-3-(1-naphthyloxy)-2-propanol
Molecules, 2012, 17, 10864-10874
4.29Citations (PDF)
192Microwave-assisted enzymatic resolution of (R,S)-2-octanol in ionic liquid
Process Biochemistry, 2012, 47, 479-484
3.919Citations (PDF)
193Optimization of APE1547-catalyzed enantioselective transesterification of (R/S)-2-methyl-1-butanol in an ionic liquid2.818Citations (PDF)
194Enantioselective esterification of ibuprofen by a novel thermophilic Biocatalyst: APE15472.831Citations (PDF)
195Enantioselective transesterification of glycidol catalysed by a novel lipase expressed from Bacillus subtilis3.513Citations (PDF)
196Switchable-multi-wavelength fiber laser based on dual-core all-solid photonic bandgap fiber0.24Citations (PDF)
197Deep notch filter based on liquid-filled photonic crystal fiber0.22Citations (PDF)
198Both hydrolytic and transesterification activities of Penicillium expansum lipase are significantly enhanced in ionic liquid [BMIm][PF6]2.269Citations (PDF)
199The effect of ultrasound on lipase-catalyzed regioselective acylation of mangiferin in non-aqueous solvents1.724Citations (PDF)
200Microwave-assisted fatty acid methyl ester production from soybean oil by Novozym 435
Green Chemistry, 2010, 12, 844
9.166Citations (PDF)
201Application of ring-opening metathesis polymerization in study of polymer molecular weight-mediated catalytic properties of immobilized lipase
Science Bulletin, 2009, 54, 382-386
9.52Citations (PDF)
202Addition of Diethylzinc to Aromatic Aldehydes Catalyzed by Hydrolase
Chinese Journal of Catalysis, 2009, 30, 396-400
16.44Citations (PDF)
203Improvement of the enantioselectivity and activity of lipase fromPseudomonassp. via adsorption on a hydrophobic support: kinetic resolution of 2-octanol1.915Citations (PDF)
204Enantioselective enzymatic hydrolysis of racemic glycidyl butyrate by lipase from Bacillus subtilis with improved catalytic properties2.212Citations (PDF)
205A chemo-enzymatic process for sequential kinetic resolution of (R,S)-2-octanol under microwave irradiation
Process Biochemistry, 2007, 42, 1312-1318
3.926Citations (PDF)
206Resolution of 2-octanol by SBA-15 immobilized Pseudomonas sp. lipase2.236Citations (PDF)
207Microwave-assisted resolution of (R,S)-2-octanol by enzymatic transesterification2.243Citations (PDF)
208A two-step enzymatic resolution of glycidyl butyrate
Process Biochemistry, 2007, 42, 1319-1325
3.910Citations (PDF)
209Distributed hybrid-fiber Raman amplifiers with a section of nonlinear microstructured optical fiber1.00Citations (PDF)
210Thiacalix[4]arene-Protected Silver Nanoclusters Encapsulating Different Two-Electron Superatom Oligomers8.76Citations (PDF)
211Cosmic Blueprint to Nanoscale Design: Hoag’s Object-Like Polyoxovanadate Encapsulated by a Hierarchical Silver Nanocluster15.012Citations (PDF)
212Confined Assembly of Well-Defined Single-Unit Chain with Charge Delocalization for Boosting Catalysis15.04Citations (PDF)
213Understanding Excited States in Magic Series Au 8 n +4 (SR) 4 n +8 Nanoclusters: Role of Size, Ligands, and Theory Level4.23Citations (PDF)
214High-nuclearity Cu 14 ionic complex featuring 1,3-bis(diphenylphosphino)propane and methylsilsesquioxane ligands: highly efficient catalysis of mild peroxidative alkane fuctionalizations
Chemical Communications, 0, 62, 181-184
3.43Citations (PDF)
215Atomically Precise Metal Nanoclusters: Emerging Materials for Near-Infrared II Photoluminescence17.07Citations (PDF)