Qian Xiang

About Qian Xiang

Qian Xiang, With an exceptional h-index of 9 and a recent h-index of 9 (since 2020), a distinguished researcher at Shanghai Jiao Tong University, specializes in the field of Electrochemical.

His recent articles reflect a diverse array of research interests and contributions to the field:

Facile synthesis of supported CuNi nano-clusters as an electrochemical CO 2 reduction catalyst with broad potential range

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 …

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

Recent progress in self-supported nanoarrays with diverse substrates for water splitting and beyond

Heterostructure of ZnO Nanosheets/Zn with a Highly Enhanced Edge Surface for Efficient CO2 Electrochemical Reduction to CO

Reconsidering the benchmarking evaluation of catalytic activity in oxygen reduction reaction

Strain-induced corrosion kinetics at nanoscale are revealed in liquid: enabling control of corrosion dynamics of electrocatalysis

Boosting oxygen and peroxide reduction reactions on PdCu intermetallic cubes

Qian Xiang Information

University

Position

___

Citations(all)

659

Citations(since 2020)

652

Cited By

233

hIndex(all)

9

hIndex(since 2020)

9

i10Index(all)

9

i10Index(since 2020)

9

Email

University Profile Page

Google Scholar

Qian Xiang Skills & Research Interests

Electrochemical

Top articles of Qian Xiang

Facile synthesis of supported CuNi nano-clusters as an electrochemical CO 2 reduction catalyst with broad potential range

Chemical Communications

2023

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 …

ACS Applied Energy Materials

2022/7/6

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

ACS Applied Energy Materials

2022/4/27

Recent progress in self-supported nanoarrays with diverse substrates for water splitting and beyond

2021/8/1

Heterostructure of ZnO Nanosheets/Zn with a Highly Enhanced Edge Surface for Efficient CO2 Electrochemical Reduction to CO

ACS Applied Materials & Interfaces

2021/2/23

Reconsidering the benchmarking evaluation of catalytic activity in oxygen reduction reaction

2020/10/23

Strain-induced corrosion kinetics at nanoscale are revealed in liquid: enabling control of corrosion dynamics of electrocatalysis

Chem

2020/9/10

Boosting oxygen and peroxide reduction reactions on PdCu intermetallic cubes

ChemElectroChem

2020/6/17

Manipulation of Electron Transfer between Pd and TiO2 for Improved Electrocatalytic Hydrogen Evolution Reaction Performance

ACS applied materials & interfaces

2020/5/19

See List of Professors in Qian Xiang University(Shanghai Jiao Tong University)