Suivre
Jiayi Tang
Jiayi Tang
Research Associate, Curtin University
Adresse e-mail validée de curtin.edu.au
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Perovskite‐Based Electrocatalysts for Cost‐Effective Ultrahigh‐Current‐Density Water Splitting in Anion Exchange Membrane Electrolyzer Cell
J Tang#, X Xu#, T Tang, Y Zhong, Z Shao
Small Methods 6 (11), 2201099, 2022
1312022
Identifying a universal activity descriptor and a unifying mechanism concept on perovskite oxides for green hydrogen production
D Guan, H Xu, Q Zhang, YC Huang, C Shi, YC Chang, X Xu, J Tang, Y Gu, ...
Advanced Materials 35 (44), 2305074, 2023
1192023
Covalent Organic Framework (COF)‐Based Hybrids for Electrocatalysis: Recent Advances and Perspectives
J Tang, C Su, Z Shao
Small Methods 5 (12), 2100945, 2021
742021
Advanced membrane‐based electrode engineering toward efficient and durable water electrolysis and cost‐effective seawater electrolysis in membrane electrolyzers
J Tang, C Su, Z Shao
Exploration 4 (1), 20220112, 2024
472024
Recent advances in noble metal-based nanocomposites for electrochemical reactions
J Tang, D Chen, Q Yao, J Xie, J Yang
Materials today energy 6, 115-127, 2017
472017
Self-reconstruction of highly active NiCo2O4 with triple-continuous transfer of electrons, ions, and oxygen for Zn-air batteries
W Tang, J Tang, K Liao, Z Shao
Chemical Engineering Journal 455, 140855, 2023
332023
Replacement reaction-based synthesis of supported palladium catalysts with atomic dispersion for catalytic removal of benzene
L Xu, D Chen, J Qu, L Wang, J Tang, H Liu, J Yang
Journal of Materials Chemistry A 6 (35), 17032-17039, 2018
332018
Oxide-based precious metal-free electrocatalysts for anion exchange membrane fuel cells: from material design to cell applications
J Tang, C Su, Y Zhong, Z Shao
Journal of Materials Chemistry A 9 (6), 3151-3179, 2021
272021
Advances in power generation from ammonia via electrocatalytic oxidation in direct ammonia fuel cells
H Shi#, J Tang#, W Yu, MO Tadé, Z Shao
Chemical Engineering Journal, 150896, 2024
222024
Advances in cutting‐edge electrode engineering toward CO2 electrolysis at high current density and selectivity: A mini‐review
J Tang, E Weiss, Z Shao
Carbon Neutralization 1 (2), 140-158, 2022
162022
Fine silver sulfide–platinum nanocomposites supported on carbon substrates for the methanol oxidation reaction
J Tang, D Chen, C Li, X Yang, H Liu, J Yang
RSC advances 7 (6), 3455-3460, 2017
132017
Silver Compositing Boosts Water Electrolysis Activity and Durability of RuO2 in a Proton‐Exchange‐Membrane Water Electrolyzer
J Tang, Y Zhong, C Su, Z Shao
Small Science 3 (9), 2300055, 2023
112023
Nonthermal Plasma Treatment for Electrocatalysts Structural and Surface Engineering
J Tang, C Su, Z Shao
Energy Technology 10 (9), 2200235, 2022
92022
Operando Studies Redirect Spatiotemporal Restructuration of Model Coordinated Oxides in Electrochemical Oxidation
D Guan, H Xu, YC Huang, C Jing, Y Tsujimoto, X Xu, Z Lin, J Tang, ...
Advanced Materials, 2413073, 2024
82024
First observation of electrode-correlated protonic conductivity of perovskite-type electrolyte and way towards optimization
Z Luo#, J Tang#, Z Wang#, G Yang, T Zhu, Z Lin, Z Shao
Energy & Environmental Science, 2024
82024
A semi-vapor electrolysis technology for hydrogen generation from wide water resources
J Tang, K Guo, D Guan, Y Hao, Z Shao
Energy & Environmental Science 17 (19), 7394-7402, 2024
42024
Heterostructure boosts a noble-metal-free oxygen-evolving electrocatalyst in acid
J Wang, Y Zhang, Y Wang, J Cho, TS Chan, Y Ha, SC Haw, CW Kao, ...
Energy & Environmental Science 17 (16), 5972-5983, 2024
32024
A Complex Oxide Containing Inherent Peroxide Ions for Catalyzing Oxygen Evolution Reactions in Acid
J Dai, Z Shen, Y Chen, M Li, VK Peterson, J Tang, X Wang, Y Li, D Guan, ...
Journal of the American Chemical Society 146 (49), 33663-33674, 2024
22024
Boosting Alkaline Hydrogen Evolution by Creating Atomic-Scale Pair Cocatalytic Sites in Single-Phase Single-Atom-Ruthenium-Incorporated Cobalt Oxide
F Zhang, S Hong, R Qiao, WH Huang, Z Tang, J Tang, CW Pao, MH Yeh, ...
ACS nano, 2025
2025
Undoped ruthenium oxide as a stable catalyst for the acidic oxygen evolution reaction
J Tang, D Guan, H Xu, L Zhao, U Arshad, Z Fang, T Zhu, M Kim, CW Pao, ...
Nature Communications 16 (1), 801, 2025
2025
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