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Qian Xiang
Qian Xiang
在 sjtu.edu.cn 的电子邮件经过验证
标题
引用次数
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年份
Coupling Interface Constructions of MoS2/Fe5Ni4S8 Heterostructures for Efficient Electrochemical Water Splitting
Y Wu, F Li, W Chen, Q Xiang, Y Ma, H Zhu, P Tao, C Song, W Shang, ...
Advanced materials 30 (38), 1803151, 2018
2612018
In situ vertical growth of Fe–Ni layered double-hydroxide arrays on Fe–Ni alloy foil: interfacial layer enhanced electrocatalyst with small overpotential for oxygen evolution …
Q Xiang, F Li, W Chen, Y Ma, Y Wu, X Gu, Y Qin, P Tao, C Song, W Shang, ...
ACS Energy Letters 3 (10), 2357-2365, 2018
1652018
Strong Electronic Interaction of Amorphous Fe2O3 Nanosheets with Single‐Atom Pt toward Enhanced Carbon Monoxide Oxidation
W Chen, Y Ma, F Li, L Pan, W Gao, Q Xiang, W Shang, C Song, P Tao, ...
Advanced Functional Materials 29 (42), 1904278, 2019
682019
Strain-induced corrosion kinetics at nanoscale are revealed in liquid: enabling control of corrosion dynamics of electrocatalysis
F Shi, W Gao, H Shan, F Li, Y Xiong, J Peng, Q Xiang, W Chen, P Tao, ...
Chem 6 (9), 2257-2271, 2020
642020
Reconsidering the benchmarking evaluation of catalytic activity in oxygen reduction reaction
W Chen, Q Xiang, T Peng, C Song, W Shang, T Deng, J Wu
IScience 23 (10), 2020
532020
Heterostructure of ZnO Nanosheets/Zn with a Highly Enhanced Edge Surface for Efficient CO2 Electrochemical Reduction to CO
Q Xiang, F Li, J Wang, W Chen, Q Miao, Q Zhang, P Tao, C Song, ...
ACS Applied Materials & Interfaces 13 (9), 10837-10844, 2021
412021
Recent progress in self-supported nanoarrays with diverse substrates for water splitting and beyond
Q Xiang, J Wang, Q Miao, P Tao, C Song, W Shang, T Deng, Z Yin, J Wu
Materials Today Nano 15, 100120, 2021
292021
Ternary Pt–Pd–Ag alloy nanoflowers for oxygen reduction reaction electrocatalysis
A Chalgin, F Shi, F Li, Q Xiang, W Chen, C Song, P Tao, W Shang, ...
CrystEngComm 19 (46), 6964-6971, 2017
272017
Manipulation of Electron Transfer between Pd and TiO2 for Improved Electrocatalytic Hydrogen Evolution Reaction Performance
A Chalgin, W Chen, Q Xiang, Y Wu, F Li, F Shi, C Song, P Tao, W Shang, ...
ACS applied materials & interfaces 12 (24), 27037-27044, 2020
202020
Effectively Tuning the Ratio of CO and H2 into Syngas through CO2 Electrochemical Reduction over a Wide Potential Range on a ZnO Nanosheet via Ni Doping
J Wang, Q Xiang, W Zhang, F Shi, F Li, P Tao, C Song, W Shang, T Deng, ...
ACS Applied Energy Materials 5 (5), 5531-5539, 2022
142022
Boosting oxygen and peroxide reduction reactions on PdCu intermetallic cubes
Q Zhang, F Li, L Lin, J Peng, W Zhang, W Chen, Q Xiang, F Shi, W Shang, ...
ChemElectroChem 7 (12), 2614-2620, 2020
92020
Ag 3 PO 4 electrocatalyst for oxygen reduction reaction: enhancement from positive charge
Y Qin, F Li, P Tu, Y Ma, W Chen, F Shi, Q Xiang, H Shan, L Zhang, P Tao, ...
RSC advances 8 (10), 5382-5387, 2018
62018
A Non‐Pt Electronically Coupled Semiconductor Heterojunction for Enhanced Oxygen Reduction Electrocatalytic Property
F Li, Y Qin, A Chalgin, X Gu, W Chen, Y Ma, Q Xiang, Y Wu, F Shi, Y Zong, ...
ChemistrySelect 4 (18), 5264-5268, 2019
22019
Facile synthesis of supported CuNi nano-clusters as an electrochemical CO 2 reduction catalyst with broad potential range
J Wang, F Li, R Li, Q Xiang, W Zhang, C Song, P Tao, W Shang, T Deng, ...
Chemical Communications 59 (92), 13731-13734, 2023
12023
Correction to Effectively Tuning the Ratio of CO and H2 into Syngas through CO2 Electrochemical Reduction over a Wide Potential Range on a ZnO Nanosheet …
J Wang, Q Xiang, W Zhang, F Shi, F Li, P Tao, C Song, W Shang, T Deng, ...
ACS Applied Energy Materials 5 (7), 9227-9227, 2022
12022
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