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157 peer-reviewed articles • 13,529 peer-reviewed citations • Sorted by year • Download PDF (PDF by citations)
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1Exceptionally Low-Coordinated Bismuth–Oxygen Vacancy Defect Clusters for Generating Black In 2 O 3 Photocatalysts with Superb CO 2 Reduction Performance
ACS Catalysis, 2025, 15, 1431-1443
10.043Citations (PDF)
2Electrochemical CO 2 Reduction on SnO: Insights into C 1 Product Dynamic Distribution and Reaction Mechanisms
ACS Catalysis, 2025, 15, 3173-3183
10.035Citations (PDF)
3Why Do Weak-Binding M–N–C Single-Atom Catalysts Possess Anomalously High Oxygen Reduction Activity?12.198Citations (PDF)
4Closed-Loop Framework for Discovering Stable and Low-Cost Bifunctional Metal Oxide Catalysts for Efficient Electrocatalytic Water Splitting in Acid12.146Citations (PDF)
5Phosphorus-Mediated Oxygen Vacancy Engineering in Cu2O for Highly Selective CO2 Electroreduction to Multicarbon Products
ACS Nano, 2025, 19, 21669-21678
11.630Citations (PDF)
6The Key Steps and Distinct Performance Trends of Pyrrolic vs Pyridinic M–N–C Catalysts in Electrocatalytic Nitrate Reduction12.153Citations (PDF)
7Carbon/iron co-product from clean hydrogen production as a tri-functional adsorbent and catalyst for efficient wastewater treatment14.915Citations (PDF)
8Unraveling the pH-Dependent Oxygen Reduction Performance on Single-Atom Catalysts: From Single- to Dual-Sabatier Optima12.1204Citations (PDF)
9Recent Progress of Electrochemical Nitrate Reduction to Ammonia on Copper‐Based Catalysts: From Nanoparticles to Single Atoms4.138Citations (PDF)
10Water and Salt Concentration-Dependent Electrochemical Performance of Hydrogel Electrolytes in Zinc-Ion Batteries5.516Citations (PDF)
11Low-Overpotential Rechargeable Na–CO2 Batteries Enabled by an Oxygen-Vacancy-Rich Cobalt Oxide Catalyst5.55Citations (PDF)
12Curvature-Dependent Electrochemical Hydrogen Peroxide Synthesis Performance of Oxidized Carbon Nanotubes
ACS Catalysis, 2024, 14, 10928-10938
10.053Citations (PDF)
13Mapping Degradation of Iron–Nitrogen–Carbon Heterogeneous Molecular Catalysts with Electron-Donating/Withdrawing Substituents
ACS Catalysis, 2024, 14, 9176-9187
10.024Citations (PDF)
14Er-Doping Enhances the Oxygen Evolution Performance of Cobalt Oxide in Acidic Medium
ACS Catalysis, 2024, 14, 13814-13824
10.0115Citations (PDF)
15Spin Manipulation of Heterogeneous Molecular Electrocatalysts by an Integrated Magnetic Field for Efficient Oxygen Redox Reactions
Advanced Materials, 2024, 36,
17.745Citations (PDF)
16Heterogeneous molecular Co–N–C catalysts for efficient electrochemical H2O2 synthesis22.6119Citations (PDF)
17Stable Zn electrodes enabled by an ultra-thin Zn phosphate protective layer6.838Citations (PDF)
18Surface states of dual-atom catalysts should be considered for analysis of electrocatalytic activity4.268Citations (PDF)
19The surface states of transition metal X-ides under electrocatalytic conditions2.269Citations (PDF)
20An electroluminescent and tunable cavity-enhanced carbon-nanotube-emitter in the telecom band11.016Citations (PDF)
21Lithium Manganate Wrapped with Ion-Selective Graphene Coatings for Thermally Assisted Lithium Extraction from Simulated Seawater
Energy & Fuels, 2023, 37, 18093-18102
4.320Citations (PDF)
22Assemble 2D redox-active covalent organic framework/graphene hybrids as high-performance capacitive materials
Carbon, 2022, 190, 412-421
8.750Citations (PDF)
23Synergetic V2O5·3H2O/Metallic VS2 Nanocomposites Endow a Long Life and High Rate Capability to Aqueous Zinc-Ion Batteries
Energy & Fuels, 2022, 36, 3319-3327
4.324Citations (PDF)
24Printed thin film transistors with 108 on/off ratios and photoelectrical synergistic characteristics using isoindigo-based polymers-enriched (9,8) carbon nanotubes
Nano Research, 2022, 15, 5517-5526
6.715Citations (PDF)
25Interfacial engineering of heterogeneous molecular electrocatalysts using ionic liquids towards efficient hydrogen peroxide production
Chinese Journal of Catalysis, 2022, 43, 1238-1246
12.415Citations (PDF)
26Graphitic carbon from catalytic methane decomposition as efficient conductive additives for zinc-carbon batteries
Carbon, 2022, 192, 84-92
8.726Citations (PDF)
27Bifunctional catalysts for heterogeneous electro-Fenton processes: a review
Environmental Chemistry Letters, 2022, 20, 3837-3859
16.797Citations (PDF)
28Impact of Conjugated Polymer Characteristics on the Enrichment of Single-Chirality Single-Walled Carbon Nanotubes
ACS Applied Polymer Materials, 2022, 4, 6239-6254
3.528Citations (PDF)
29Thermally assisted efficient electrochemical lithium extraction from simulated seawater
Water Research, 2022, 223, 118969
10.056Citations (PDF)
30The “burst effect” of hydrogen desorption in MgH2 dehydrogenation
Journal of Materials Chemistry A, 2022, 10, 22363-22372
6.8103Citations (PDF)
31Degradation of carbon materials in electrocatalysis2.723Citations (PDF)
32Anionic defect-enriched ZnMn2O4 nanorods with boosting pseudocapacitance for high-efficient and durable Li/Na storage
Chemical Engineering Journal, 2021, 406, 126133
8.760Citations (PDF)
33Biowaste-sustained MoSe2 composite as an efficient anode for sodium/potassium storage applications4.937Citations (PDF)
34One-Dimensional van der Waals Heterostructures as Efficient Metal-Free Oxygen Electrocatalysts
ACS Nano, 2021, 15, 3309-3319
11.6150Citations (PDF)
35Ionic liquid gating of single-walled carbon nanotube devices with ultra-short channel length down to 10 nm2.411Citations (PDF)
36Flexible Free‐Standing VO2/MXene Conductive Films as Cathodes for Quasi‐Solid‐State Zinc‐Ion Batteries
ChemElectroChem, 2021, 8, 1091-1097
3.256Citations (PDF)
373d Transition‐Metal‐Mediated Columbite Nanocatalysts for Decentralized Electrosynthesis of Hydrogen Peroxide
Small, 2021, 17,
7.353Citations (PDF)
38High-performance Fe–N–C electrocatalysts with a “chain mail” protective shield
Nano Materials Science, 2021, 3, 420-428
8.713Citations (PDF)
39High-energy-density aqueous sodium-ion batteries enabled by chromium hexacycnochromate anodes
Chemical Engineering Journal, 2021, 415, 129003
8.729Citations (PDF)
40Rechargeable zinc-air batteries with neutral electrolytes: Recent advances, challenges, and prospects
EnergyChem, 2021, 3, 100055
13.2135Citations (PDF)
41Novel antimony phosphate loaded on grid-like N, S-doped carbon for facilitating sodium-ion storage
Chemical Engineering Journal, 2021, 415, 128942
8.722Citations (PDF)
42Robust hetero-MoO3/MoO2@N-doped carbon nanobelts decorated with oxygen deficiencies as high-performance anodes for potassium/sodium storage8.053Citations (PDF)
43Co–Fe–Cr (oxy)Hydroxides as Efficient Oxygen Evolution Reaction Catalysts16.6161Citations (PDF)
44Thermo-osmosis-Coupled Thermally Regenerative Electrochemical Cycle for Efficient Lithium Extraction5.537Citations (PDF)
45Degradation: A critical challenge for M–N–C electrocatalysts
Journal of Energy Chemistry, 2021, 63, 667-674
12.547Citations (PDF)
46One-dimensional covalent organic framework—Carbon nanotube heterostructures for efficient capacitive energy storage2.412Citations (PDF)
47Prussian blue, its analogues and their derived materials for electrochemical energy storage and conversion
Energy Storage Materials, 2020, 25, 585-612
9.2274Citations (PDF)
48A Flexible Rechargeable Zinc–Air Battery with Excellent Low‐Temperature Adaptability11.7349Citations (PDF)
49A Flexible Rechargeable Zinc–Air Battery with Excellent Low‐Temperature Adaptability
Angewandte Chemie, 2020, 132, 4823-4829
0.964Citations (PDF)
50Low-Temperature Electroluminescence Excitation Mapping of Excitons and Trions in Short-Channel Monochiral Carbon Nanotube Devices
ACS Nano, 2020, 14, 2709-2717
11.621Citations (PDF)
51Pressure-retarded membrane distillation for simultaneous hypersaline brine desalination and low-grade heat harvesting
Journal of Membrane Science, 2020, 597, 117765
7.939Citations (PDF)
52Thiocyanate-Modified Silver Nanofoam for Efficient CO2 Reduction to CO
ACS Catalysis, 2020, 10, 1444-1453
10.073Citations (PDF)
53Lamellar V5O12·6H2O Nanobelts Coupled with Inert Zn(OH)2·0.5H2O as Cathode for Aqueous Zn2+/Nonaqueous Na+ Storage Applications2.517Citations (PDF)
54A Durable Na0.56V2O5 Nanobelt Cathode Material Assisted by Hybrid Cationic Electrolyte for High‐Performance Aqueous Zinc‐Ion Batteries
ChemElectroChem, 2020, 7, 283-288
3.2105Citations (PDF)
55Organic pillars pre-intercalated V4+-V2O5·3H2O nanocomposites with enlarged interlayer and mixed valence for aqueous Zn-ion storage
Applied Surface Science, 2020, 534, 147608
5.134Citations (PDF)
56Octahedral Coordinated Trivalent Cobalt Enriched Multimetal Oxygen‐Evolution Catalysts16.674Citations (PDF)
57A graphene-covalent organic framework hybrid for high-performance supercapacitors
Energy Storage Materials, 2020, 32, 448-457
9.2185Citations (PDF)
58Electrocatalytic hydrogen evolution under neutral pH conditions: current understandings, recent advances, and future prospects22.6524Citations (PDF)
59Intrinsic Activity of Metal Centers in Metal–Nitrogen–Carbon Single-Atom Catalysts for Hydrogen Peroxide Synthesis12.1293Citations (PDF)
60Recent Progress of Carbon-Supported Single-Atom Catalysts for Energy Conversion and Storage
Matter, 2020, 3, 1442-1476
9.6330Citations (PDF)
61Dual‐Template Pore Engineering of Whey Powder‐Derived Carbon as an Efficient Oxygen Reduction Reaction Electrocatalyst for Primary Zinc‐Air Battery
Chemistry - an Asian Journal, 2020, 15, 1881-1889
2.23Citations (PDF)
62Catalytic activity atlas of ternary Co–Fe–V metal oxides for the oxygen evolution reaction
Journal of Materials Chemistry A, 2020, 8, 15951-15961
6.860Citations (PDF)
63Hierarchically porous carbon nanofibers embedded with cobalt nanoparticles for efficient H2O2 detection on multiple sensor platforms6.364Citations (PDF)
64Viscosity sensitive near-infrared fluorescent probes based on functionalized single-walled carbon nanotubes
Chemical Communications, 2020, 56, 8301-8304
2.917Citations (PDF)
65Vanishing Hysteresis in Carbon Nanotube Transistors Embedded in Boron Nitride/Polytetrafluoroethylene Heterolayers1.35Citations (PDF)
66The on-demand engineering of metal-doped porous carbon nanofibers as efficient bifunctional oxygen catalysts for high-performance flexible Zn–air batteries6.848Citations (PDF)
67Core-shell structured graphene aerogels with multifunctional mechanical, thermal and electromechanical properties
Carbon, 2020, 162, 365-374
8.729Citations (PDF)
68Toward efficient and high rate sodium-ion storage: A new insight from dopant-defect interplay in textured carbon anode materials
Energy Storage Materials, 2020, 28, 55-63
9.2157Citations (PDF)
69Drying graphene hydrogel fibers for capacitive energy storage
Carbon, 2020, 164, 100-110
8.767Citations (PDF)
70Graphene oxide laminates intercalated with 2D covalent-organic frameworks as a robust nanofiltration membrane6.873Citations (PDF)
71Flexible Zinc‐Ion Hybrid Fiber Capacitors with Ultrahigh Energy Density and Long Cycling Life for Wearable Electronics
Small, 2019, 15,
7.3185Citations (PDF)
72Mosaic Red Phosphorus/MoS2 Hybrid as an Anode to Boost Potassium‐Ion Storage
ChemElectroChem, 2019, 6, 4689-4695
3.217Citations (PDF)
73Ultrathin nickel boride nanosheets anchored on functionalized carbon nanotubes as bifunctional electrocatalysts for overall water splitting6.8156Citations (PDF)
74Synthesis of graphene materials by electrochemical exfoliation: Recent progress and future potential
2019, 1, 173-199
393Citations (PDF)
75Homogeneous, Heterogeneous, and Biological Catalysts for Electrochemical N2 Reduction toward NH3 under Ambient Conditions
ACS Catalysis, 2019, 9, 5245-5267
10.0210Citations (PDF)
76A core-sheath holey graphene/graphite composite fiber intercalated with MoS2 nanosheets for high-performance fiber supercapacitors
Electrochimica Acta, 2019, 305, 493-501
4.265Citations (PDF)
77Pressure-retarded membrane distillation for low-grade heat recovery: The critical roles of pressure-induced membrane deformation
Journal of Membrane Science, 2019, 579, 90-101
7.936Citations (PDF)
78Big to Small: Ultrafine Mo2C Particles Derived from Giant Polyoxomolybdate Clusters for Hydrogen Evolution Reaction
Small, 2019, 15,
7.371Citations (PDF)
792D materials for 1D electrochemical energy storage devices
Energy Storage Materials, 2019, 19, 102-123
9.293Citations (PDF)
80Ultralow-platinum-loading nanocarbon hybrids for highly sensitive hydrogen peroxide detection6.335Citations (PDF)
81Cobalt Nanoparticles Confined in Carbon Cages Derived from Zeolitic Imidazolate Frameworks as Efficient Oxygen Electrocatalysts for Zinc‐Air Batteries
Batteries and Supercaps, 2019, 2, 355-363
2.824Citations (PDF)
82Ultrafast hydrothermal assembly of nanocarbon microfibers in near-critical water for 3D microsupercapacitors
Carbon, 2018, 132, 698-708
8.727Citations (PDF)
83Antimicrobial graphene materials: the interplay of complex materials characteristics and competing mechanisms
Biomaterials Science, 2018, 6, 766-773
4.043Citations (PDF)
84Milk powder-derived bifunctional oxygen electrocatalysts for rechargeable Zn-air battery
Energy Storage Materials, 2018, 11, 134-143
9.254Citations (PDF)
85Metal-free bifunctional carbon electrocatalysts derived from zeolitic imidazolate frameworks for efficient water splitting6.066Citations (PDF)
86Recent Advances in Materials and Design of Electrochemically Rechargeable Zinc–Air Batteries
Small, 2018, 14,
7.3270Citations (PDF)
87A hierarchically porous nickel–copper phosphide nano-foam for efficient electrochemical splitting of water
Nanoscale, 2017, 9, 4401-4408
3.7128Citations (PDF)
88Hydrothermal assembly of micro-nano-integrated core-sheath carbon fibers for high-performance all-carbon micro-supercapacitors
Energy Storage Materials, 2017, 9, 221-228
9.239Citations (PDF)
89Hydrogen evolution reaction activity of nickel phosphide is highly sensitive to electrolyte pH
Journal of Materials Chemistry A, 2017, 5, 20390-20397
6.8127Citations (PDF)
90Exploring the upper limit of single-walled carbon nanotube purity by multiple-cycle aqueous two-phase separation
Nanoscale, 2017, 9, 11640-11646
3.734Citations (PDF)
91Amorphous Bimetallic Oxide–Graphene Hybrids as Bifunctional Oxygen Electrocatalysts for Rechargeable Zn–Air Batteries
Advanced Materials, 2017, 29,
17.7285Citations (PDF)
92Sandwich-Architectured Poly(lactic acid)–Graphene Composite Food Packaging Films5.5177Citations (PDF)
93Probing the Diameter Limit of Single Walled Carbon Nanotubes in SWCNT: Fullerene Solar Cells16.655Citations (PDF)
94Carbon nanomaterials for advancing separation membranes: A strategic perspective
Carbon, 2016, 109, 694-710
8.7219Citations (PDF)
95Bacterial physiology is a key modulator of the antibacterial activity of graphene oxide
Nanoscale, 2016, 8, 17181-17189
3.749Citations (PDF)
96“Smart poisoning” of Co/SiO2catalysts by sulfidation for chirality-selective synthesis of (9,8) single-walled carbon nanotubes
Nanoscale, 2016, 8, 17705-17713
3.738Citations (PDF)
97Synergism of Water Shock and a Biocompatible Block Copolymer Potentiates the Antibacterial Activity of Graphene Oxide
Small, 2016, 12, 951-962
7.332Citations (PDF)
98Microbe-derived carbon materials for electrical energy storage and conversion
Journal of Energy Chemistry, 2016, 25, 191-198
12.550Citations (PDF)
99Space-confined assembly of all-carbon hybrid fibers for capacitive energy storage: realizing a built-to-order concept for micro-supercapacitors22.6105Citations (PDF)
100Textile energy storage: Structural design concepts, material selection and future perspectives
Energy Storage Materials, 2016, 3, 123-139
9.2153Citations (PDF)
101Bolometric-Effect-Based Wavelength-Selective Photodetectors Using Sorted Single Chirality Carbon Nanotubes2.722Citations (PDF)
102All‐Carbon Nanoarchitectures as High‐Performance Separation Membranes with Superior Stability
Advanced Functional Materials, 2015, 25, 7348-7359
12.0294Citations (PDF)
103Transforming Pristine Carbon Fiber Tows into High Performance Solid‐State Fiber Supercapacitors
Advanced Materials, 2015, 27, 4895-4901
17.7209Citations (PDF)
104(9,8) Single‐Walled Carbon Nanotube Enrichment via Aqueous Two‐Phase Separation and Their Thin‐Film Transistor Applications3.930Citations (PDF)
105E. coli-derived carbon with nitrogen and phosphorus dual functionalities for oxygen reduction reaction
Catalysis Today, 2015, 249, 228-235
3.923Citations (PDF)
106Ternary Hybrids of Amorphous Nickel Hydroxide–Carbon Nanotube‐Conducting Polymer for Supercapacitors with High Energy Density, Excellent Rate Capability, and Long Cycle Life
Advanced Functional Materials, 2015, 25, 1063-1073
12.0310Citations (PDF)
107A high-performance metal-free hydrogen-evolution reaction electrocatalyst from bacterium derived carbon6.883Citations (PDF)
108All-carbon solid-state yarn supercapacitors from activated carbon and carbon fibers for smart textiles
Materials Horizons, 2015, 2, 598-605
8.5143Citations (PDF)
109Nickel hydroxide–carbon nanotube nanocomposites as supercapacitor electrodes: crystallinity dependent performances
Nanotechnology, 2015, 26, 314003
1.919Citations (PDF)
110Sulfur-induced chirality changes in single-walled carbon nanotube synthesis by ethanol chemical vapor deposition on a Co/SiO2catalyst6.833Citations (PDF)
111Carbon nanomaterials for photovoltaic process
Nano Energy, 2015, 15, 490-522
12.058Citations (PDF)
112Impact of Sublethal Levels of Single-Wall Carbon Nanotubes on Pyoverdine Production in Pseudomonas aeruginosa and Its Environmental Implications4.921Citations (PDF)
113Graphene oxide as effective selective barriers on a hollow fiber membrane for water treatment process
Journal of Membrane Science, 2015, 474, 244-253
7.9226Citations (PDF)
114Emergence of fiber supercapacitors
Chemical Society Reviews, 2015, 44, 647-662
32.6547Citations (PDF)
115Synthesis of free-standing carbon nanohybrid by directly growing carbon nanotubes on air-sprayed graphene oxide paper and its application in supercapacitor2.421Citations (PDF)
116Catalysts for chirality selective synthesis of single-walled carbon nanotubes
Carbon, 2015, 81, 1-19
8.7118Citations (PDF)
117Mechanical reinforcement of polyethylene using n‐alkyl group‐functionalized multiwalled carbon nanotubes: Effect of alkyl group carbon chain length and density2.48Citations (PDF)
118Extraction of (9,8) Single‐Walled Carbon Nanotubes by Fluorene‐Based Polymers2.222Citations (PDF)
119Scalable synthesis of hierarchically structured carbon nanotube–graphene fibres for capacitive energy storage
Nature Nanotechnology, 2014, 9, 555-562
23.81,427Citations (PDF)
120Controlled Functionalization of Carbonaceous Fibers for Asymmetric Solid‐State Micro‐Supercapacitors with High Volumetric Energy Density
Advanced Materials, 2014, 26, 6790-6797
17.7257Citations (PDF)
121Narrow-chirality distributed single-walled carbon nanotube synthesis by remote plasma enhanced ethanol deposition on cobalt incorporated MCM-41 catalyst
Carbon, 2014, 66, 134-143
8.717Citations (PDF)
122Multifunctional nitrogen-rich “brick-and-mortar” carbon as high performance supercapacitor electrodes and oxygen reduction electrocatalysts6.836Citations (PDF)
123Fabrication of novel functionalized multi-walled carbon nanotube immobilized hollow fiber membranes for enhanced performance in forward osmosis process
Journal of Membrane Science, 2013, 446, 244-254
7.9115Citations (PDF)
124Hybrid ternary rice paper–manganese oxide–carbon nanotube nanocomposites for flexible supercapacitors
Nanoscale, 2013, 5, 11108
3.736Citations (PDF)
125One-step dual template synthesis of platinum on mesoporous carbon nanowires for electrocatalysts6.68Citations (PDF)
126Acetone‐Induced Graphene Oxide Film Formation at the Water–Air Interface2.230Citations (PDF)
127Nitrogen doped holey graphene as an efficient metal-free multifunctional electrochemical catalyst for hydrazine oxidation and oxygen reduction
Nanoscale, 2013, 5, 3457
3.7165Citations (PDF)
128Chiral-Selective CoSO4/SiO2 Catalyst for (9,8) Single-Walled Carbon Nanotube Growth
ACS Nano, 2013, 7, 614-626
11.6111Citations (PDF)
129Graphene layers on Cu and Ni (111) surfaces in layer controlled graphene growth
RSC Advances, 2013, 3, 3046
4.038Citations (PDF)
130Length-dependent performances of sodium deoxycholate-dispersed single-walled carbon nanotube thin-film transistors
Journal of Materials Research, 2013, 28, 1004-1011
1.913Citations (PDF)
131Facile preparation of Carbon nanotubes and graphene sheets by a catalyst-free refluxing approach
Nano Research, 2012, 5, 640-645
6.78Citations (PDF)
132Recognition of carbon nanotube chirality by phage display
RSC Advances, 2012, 2, 1466-1476
4.026Citations (PDF)
133Reactive Sites for Chiral Selective Growth of Single-Walled Carbon Nanotubes: A DFT Study of Ni55–Cn Complexes
Journal of Physical Chemistry A, 2012, 116, 11709-11717
1.922Citations (PDF)
134Formation of single-walled carbon nanotube thin films enriched with semiconducting nanotubes and their application in photoelectrochemical devices
Nanoscale, 2011, 3, 1845
3.717Citations (PDF)
135Ethanol-Assisted Graphene Oxide-Based Thin Film Formation at Pentane–Water Interface
Langmuir, 2011, 27, 9174-9181
3.179Citations (PDF)
136Nitrogen‐Doped Single‐Walled Carbon Nanotubes Grown on Substrates: Evidence for Framework Doping and Their Enhanced Properties12.063Citations (PDF)
137Preparation and electrochemical properties of MnO2nanosheets attached to Au nanoparticles on carbon nanotubes
Dalton Transactions, 2011, 40, 2332-2337
2.445Citations (PDF)
138Specific and reversible immobilization of NADH oxidase on functionalized carbon nanotubes
Journal of Biotechnology, 2010, 150, 57-63
2.9112Citations (PDF)
139Enrichment of (8,4) Single‐Walled Carbon Nanotubes Through Coextraction with Heparin
Small, 2010, 6, 110-118
7.329Citations (PDF)
140Selective Synthesis of (9,8) Single Walled Carbon Nanotubes on Cobalt Incorporated TUD-1 Catalysts12.1130Citations (PDF)
141Aggregation-Dependent Photoluminescence Sidebands in Single-Walled Carbon Nanotube
Journal of Physical Chemistry C, 2010, 114, 6704-6711
2.412Citations (PDF)
142Charge-induced conductance modulation of carbon nanotube field effect transistor memory devices
Carbon, 2009, 47, 3063-3070
8.715Citations (PDF)
143Energy Transfer from Photo-Excited Fluorene Polymers to Single-Walled Carbon Nanotubes
Journal of Physical Chemistry C, 2009, 113, 14946-14952
2.457Citations (PDF)
144Sharper and Faster “Nano Darts” Kill More Bacteria: A Study of Antibacterial Activity of Individually Dispersed Pristine Single-Walled Carbon Nanotube
ACS Nano, 2009, 3, 3891-3902
11.6549Citations (PDF)
145Effect of Centrifugation on the Purity of Single-Walled Carbon Nanotubes from MCM-41 Containing Cobalt
Journal of Physical Chemistry C, 2008, 112, 17567-17575
2.428Citations (PDF)
146Toward High-Performance Solution-Processed Carbon Nanotube Network Transistors by Removing Nanotube Bundles
Journal of Physical Chemistry C, 2008, 112, 12089-12091
2.465Citations (PDF)
147Assessment of (n,m) Selectively Enriched Small Diameter Single-Walled Carbon Nanotubes by Density Differentiation from Cobalt-Incorporated MCM-41 for Macroelectronics
Chemistry of Materials, 2008, 20, 7417-7424
4.817Citations (PDF)
148Selective Enrichment of (6,5) and (8,3) Single-Walled Carbon Nanotubes via Cosurfactant Extraction from Narrow (n,m) Distribution Samples
Journal of Physical Chemistry B, 2008, 112, 2771-2774
2.157Citations (PDF)
149Low-Defect, Purified, Narrowly (n,m)-Dispersed Single-Walled Carbon Nanotubes Grown from Cobalt-Incorporated MCM-41
ACS Nano, 2007, 1, 327-336
11.657Citations (PDF)
150Pressure-Induced Single-Walled Carbon Nanotube (n,m) Selectivity on Co−Mo Catalysts
Journal of Physical Chemistry C, 2007, 111, 14612-14616
2.479Citations (PDF)
151(n,m) Selectivity of Single-Walled Carbon Nanotubes by Different Carbon Precursors on Co−Mo Catalysts12.1197Citations (PDF)
152Furfural electrovalorisation to hydrofuroin with near-unity faradaic efficiency on a single-atom zinc catalyst
EES Catalysis, 0, 3, 1062-1074
6.75Citations (PDF)
153Dynamic evolution of self-renewal Fe–N–C catalysts for the acidic oxygen reduction reaction
EES Catalysis, 0, 3, 1358-1368
6.74Citations (PDF)
154Mitigating Fe–N–C Catalyst Degradation Using Organic Radical Scavengers
Energy & Fuels, 0, 39, 18032-18042
4.33Citations (PDF)
155Unlocking efficient water/seawater oxidation: The dual-role of Pt dopants in accelerating surface reconstruction and switching anodic reaction mechanisms14.95Citations (PDF)
156Stepwise Acceleration of Water Dissociation and Hydrogen Spillover for Enhanced Overall Alkaline Hydrogen Evolution
ACS Catalysis, 0, 16, 2827-2839
10.013Citations (PDF)
157Coordination-Dependent Oxygen Reduction Reaction Activity of Single Atom Co–N x –C Electrocatalysts12.119Citations (PDF)