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Publication

L. Du, **W. Zheng***  
**Catalyst deactivation during water electrolysis: Understanding and mitigation**
*APL Energy*, 2024, 2(2), 021501

Y. Li,* T. Xin, Z. Cao, **W. Zheng**, P He, L. Y. S. Lee  
**Optimized Transition Metal Phosphides for Direct Seawater Electrolysis: Current Trends**
*ChemSusChem*, 2024, e202301926
```Editors' Choice: Spotlights```

X. Wang, J. Lu,* Y. Wu, __W. Zheng__, H. Zhang, T. Bai, H. Liu, D. Li,* L. Ci*  
**Building Stable Anodes for High-Rate Na-Metal Batteries**
*Advanced Materials*, 2024, 36(16), 2311256
```featured on the cover```

**W. Zheng***
**Python for Electrochemistry: A Free and All-In-One Toolset**
*ECS Advances*, 2023, 2(4), 040502

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**W. Zheng***
**iR Compensation for Electrocatalysis Studies: Considerations and Recommendations**
*ACS Energy Letters*, 2023, 8, 1952-1958

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**W. Zheng***
**Beginner's Guide to Raman Spectroelectrochemistry for Electrocatalysis Study**
*Chemistry Methods*, 2023, 3(2), e202200042

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**W. Zheng***
**Single-Atom Materials as Electrochemical Sensors: Sensitivity, Selectivity, and Stability**
*Analysis & Sensing*, 2023, e202200070
```featured on the cover```

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**W. Zheng,*** L.Y.S. Lee*  
**Observing Electrocatalytic Processes via In Situ Electrochemical Scanning Tunneling Microscopy: Latest Advances**
*Chemistry - An Asian Journal*, 2022, e202200384
```featured on the cover```

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**W. Zheng,*** L.Y.S. Lee*  
**Beyond Sonication: Advanced Exfoliation Methods for Scalable Production of 2D Materials**
*Matter*, 2022, 5, 515-545

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**W. Zheng**, Y. Li, L.Y.S. Lee*  
**Bismuth and Metal-Doped Bismuth Nanoparticles Produced by Laser Ablation for Electrochemical Glucose Sensing**
*Sensors and Actuators B: Chemical*, 2022, 357, 131334

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Y. Li, **W. Zheng**, L.Y.S. Lee
**Chapter 5: Functionalized Covalent Organic Frameworks for Improved Energy Application**
in *Covalent Organic Frameworks: Chemistry, Properties, and Energy Applications for Sustainable Future*, CRC Press, 2022

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**W. Zheng**, Y. Li, L.Y.S. Lee
**Chapter 1: Earth-Abundant Metal-Based Nanomaterials for Electrochemical Water Splitting**
in *Functional Nanomaterials: Synthesis, Properties and Applications*, Wiley-VCH, 2022

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**W. Zheng**, L.Y.S. Lee,* K. Y. Wong*  
**Improving the Performance Stability of Direct Seawater Electrolysis: From Catalyst Design to Electrode Engineering**
*Nanoscale*, 2021, 13, 15177–15187

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**W. Zheng**, L.Y.S. Lee*  
**Metal-Organic Frameworks for Electrocatalysis: Catalyst or Precatalyst?**
*ACS Energy Letters*, 2021, 6, 2838–2843
```highly cited paper (Clarivate)```

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J. Yan, X. Zhang, **W. Zheng**, L.Y.S. Lee*  
**Interface Engineering of 2D-C3N4/NiFe-LDH Heterostructure for Highly Efficient Photocatalytic Hydrogen Evolution**
*ACS Applied Materials & Interfaces*, 2021, 21, 24723

**W. Zheng**, Y. Li, C.-S. Tsang, P.-K. So, L.Y.S. Lee*  
**Stabilizer-Free Bismuth Nanoparticle for Selective Polyol Electrooxidation**
*iScience*, 2021, 24, 102342

**W. Zheng**, Y. Li, M. Liu, L.Y.S. Lee*  
**Few-Layer Tellurium: Cathodic Exfoliation and Doping for Collaborative Hydrogen Evolution**
*Small*, 2021, 17, 2007768
```featured on the cover```

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J. Choi, D. Kim, **W. Zheng**, B. Yan, Y. Li, L.Y.S. Lee,* Y. Piao*  
**Interface Engineered NiFe2O4-x/NiMoO4 Nanowire Arrays for Electrochemical Oxygen Evolution**
*Applied Catalysis B: Environmental*, 2021, 286, 119857
```highly cited paper (Clarivate)```

L. Hu, Y. Li, X. Peng, **W. Zheng**, L.Y.S. Lee,* P.K. Chu,* K.-Y. Wong*  
**TiO2 Film Supported by Vertically Aligned Gold Nanorod Superlattice Array for Enhanced Photocatalytic Hydrogen Evolution**
*Chemical Engineering Journal*, 2021, 417, 127900

**W. Zheng**, M. Liu, L.Y.S. Lee*  
**Best Practices in Using Foam-Type Electrodes for Electrocatalytic Performance Benchmark**
*ACS Energy Letters*, 2020, 5, 3260

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L. Hu, Y. Li, **W. Zheng**, Y.-K. Peng, S.C.E. Tsang,* L.Y.S. Lee,* K.-Y. Wong*  
**Blue Order/Disorder Janus-Type TiO2 Nanoparticles for Enhanced Photocatalytic Hydrogen Generation**
*Journal of Materials Chemistry A*, 2020, 8, 22828

**W. Zheng**, J. Lee, Z. Gao, Y. Li, S. Lin, S. P. Lau, L.Y.S. Lee*  
**Laser-assisted Ultrafast Exfoliation of Black Phosphorus in Liquid with Tunable Thickness for Li-ion Batteries**
*Advanced Energy Materials*, 2020, 10, 1903490
```featured on the cover```

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X. Zhang, K.-A Min, **W. Zheng**, J. Hwang, B. Han,* L.Y.S. Lee*  
**Copper Phosphosulfides as a Highly Active and Stable Photocatalyst for Hydrogen Evolution Reaction**
*Applied Catalysis B: Environmental*, 2020, 273, 118927

**W. Zheng**, M. Liu, L.Y.S. Lee*  
**Electrochemical Instability of Metal-Organic Frameworks: In Situ Spectroelectrochemical Investigation of the Real Active Sites**
*ACS Catalysis*, 2020, 20, 81–92
```highly cited paper (Clarivate)```

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**W. Zheng**, C.-S. Tsang, M. Liu, L.Y. So, L.-C. Leung, L.Y.S. Lee*  
**Highly Efficient Stepwise Electrochemical Degradation of Antibiotics in Water by in situ Formed Cu(OH)2 Nanorods**
*Applied Catalysis B: Environmental*, 2019, 256, 117824

Z. Gao, M. Liu, **W. Zheng**, X. Zhang, L.Y.S. Lee*  
**Surface Engineering of MoS2 via Laser-induced Exfoliation in Protic Solvents**
*Small*, 2019, 15, 1903791

Z. Gao, **W. Zheng**, L.Y.S. Lee*  
**Highly Enhanced Pseudocapacitive Performance of Vanadium-doped MXenes in Neutral Electrolytes**
*Small*, 2019, 15, 1902649

**W. Zheng**, Y. Li, L.Y.S. Lee*  
**Insights into the Transition Metal Ion-mediated Electrooxidation of Glucose in Alkaline Electrolyte**
*Electrochimica Acta*, 2019, 308, 9–19

**W. Zheng**, C.-S. Tsang, L.Y.S. Lee,* K.-Y. Wong*  
**Two-Dimensional Metal-Organic Framework and Covalent-Organic Framework: Synthesis and their Energy-Related Applications**
*Materials Today Chemistry*, 2019, 12, 34—60

**W. Zheng**, Y. Li, L. Hu, L.Y.S. Lee*  
**Use of Carbon Supports with Copper Ion as a Highly Sensitive Non-Enzymatic Glucose Sensor**
*Sensors and Actuators B: Chemical*, 2019, 282, 187–196

M. Liu, **W. Zheng**, S. Ran, S.T. Boles, L.Y.S. Lee*  
**Overall Water Splitting Electrocatalysts based on 2D CoNi Metal-Organic Frameworks and Its Derivative**
*Advanced Materials Interfaces*, 2018, 5, 1800849
```featured on the cover```

Y. Li, L. Hu, **W. Zheng**, X. Peng, M. Liu, P. K. Chu,* L. Y. S. Lee*  
**Ni/Co-Based Nanosheet Arrays for Efficient Oxygen Evolution Reaction**
*Nano Energy*, 2018, 52, 360—368

**W. Zheng**, Y. Li, M. Liu, C.-S. Tsang, L.Y.S. Lee,* K.-Y. Wong*  
**Cu2+-doped Carbon Nitride/MWCNT as an Electrochemical Glucose Sensor**
*Electroanalysis*, 2018, 30, 1446—1454

**W. Zheng**, Y. Li, C.-S. Tsang, L. Hu, M. Liu, B. Huang, L.Y.S. Lee,* K.-Y. Wong*  
**CuII-mediated Ultra-efficient Electrooxidation of Glucose**
*ChemElectroChem*, 2017, 4, 2788—2792

**W. Zheng**, H.W. Man, L. Ye,* S.C.E. Tsang*  
**Electroreduction of Carbon Dioxide to Formic Acid and Methanol over a Palladium/Polyaniline Catalyst in Acidic Solution: A Study of the Palladium Size Effect**
*Energy Technology*, 2017, 5, 937—944

A. Kolpin, G. Jones, S. Jones, **W. Zheng**, J. Cookson, A. PE York, P. J Collier, S.C.E. Tsang*  
**Quantitative Differences in Sulfur Poisoning Phenomena over Ruthenium and Palladium: An Attempt to Deconvolute Geometric and Electronic Poisoning Effects Using Model Catalysts**
*ACS Catalysis*, 2017, 7, 592—605

**W. Zheng**, S. Nayak, W. Yuan, Z. Zeng, X. Hong, K.A. Vincent, S.C.E. Tsang*  
**A Tunable Metal-polyaniline Interface for Efficient Carbon Dioxide Electro-Reduction to Formic Acid and Methanol in Aqueous Solution**
*Chemical Communications*, 2016, 52, 13901—13904

**W. Zheng**, L. Hu, L.Y.S. Lee, K.-Y. Wong*  
**Copper Nanoparticles/Polyaniline/Graphene Composite as a Highly Sensitive Electrochemical Glucose Sensor**
*Journal of Electroanalytical Chemistry*, 2016, 781, 155—160

**W. Zheng**, J. Qu, X. Hong, K. Tedsree, S.C.E. Tsang*  
**Probing the Size and Shape Effects of Cubic- and Spherical-Shaped Palladium Nanoparticles in the Electrooxidation of Formic Acid**
*ChemCatChem*, 2015, 7, 3826—3831

S. Jones, S.M. Fairclough, M. Gordon-Brown, **W. Zheng**, A. Kolpin, B. Pang, W.C.H. Kuo, J.M. Smith, S.C.E. Tsang*  
**Dual Doping Effects (Site Blockage and Electronic Promotion) Imposed by Adatoms on Pd Nanocrystals for Catalytic Hydrogen Production**
*Chemical Communications*, 2015, 51, 46—49

K. Nakagawa, T. Jia, **W. Zheng**, S. M. Fairclough, M. Katoh, S. Sugiyama, S.C.E. Tsang*  
**Enhanced Photocatalytic Hydrogen Evolution from Water by Niobate Single Molecular Sheets and Ensembles**
*Chemical Communications*, 2014, 50, 13702—13705

**W. Zheng**, S. Jones, X. Hong,* S.C.E. Tsang*  
**Photo and Electronic Excitation for Low-Temperature Catalysis Over Metal Nanoparticles Using an Organic Semiconductor**
*RSC Advances*, 2014, 4, 47488—47496

J. Ge, Z. Zeng, F. Liao, **W. Zheng**, X. Hong,* S.C.E. Tsang*  
**Palladium on Iron Oxide Nanoparticles: the Morphological Effect of the Support in Glycerol Hydrogenolysis**
*Green Chemistry*, 2013, 15, 2064—2069

F. Liao, Y. Huang, J. Ge, **W. Zheng**, K. Tedsree, P. Collier, X. Hong,* S.C.E. Tsang*  
**Morphology-dependent Interactions of ZnO with Cu Nanoparticles at the Materials’ Interface in Selective Hydrogenation of CO2 to CH3OH**
*Angewandte Chemie International Edition*, 2011, 50, 2162—2165

Y. Huang, F. Liao, **W. Zheng**, X. Liu, X. Wu, X. Hong,* S.C.E. Tsang*  
**Temperature and Solvent- dependent Morphological Sol-Gel Transformation: an In-Situ Microscopic Observation**
*Langmuir*, 2010, 26, 3106—3114

Copyright 2024 Weiran Zheng / Electrochemical Interface and Conversion Lab @ GTIIT