Bingjun Xu (徐冰君)

About Bingjun Xu (徐冰君)

Bingjun Xu (徐冰君), With an exceptional h-index of 56 and a recent h-index of 49 (since 2020), a distinguished researcher at Peking University, specializes in the field of Heterogeneous catalysis, Electrocatalysis, Operando Spectroscopy, Renewable Energy.

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

Mechanistic insights into CC coupling in electrochemical CO reduction using gold superlattices

Understanding the effect of specific adsorption on the vibrational Stark effect of adsorbates on an electrode surface via surface enhanced spectroscopy

Influence of electric double layer rigidity on CO adsorption and electroreduction rate

Efficient conversion of propane in a microchannel reactor at ambient conditions

Benchmarking of commercial Cu catalysts in CO 2 electro-reduction using a gas-diffusion type microfluidic flow electrolyzer

Interface synergism and engineering of Pd/Co@ NC for direct ethanol fuel cells

Rationalizing kinetic behaviors of isolated boron sites catalyzed oxidative dehydrogenation of propane

Activation of light alkanes at room temperature and ambient pressure

Bingjun Xu (徐冰君) Information

University

Position

Ge Li Ning Zhao Chair Professor College of Chemistry and Molecular Engineering

Citations(all)

11766

Citations(since 2020)

9575

Cited By

5232

hIndex(all)

56

hIndex(since 2020)

49

i10Index(all)

128

i10Index(since 2020)

116

Email

University Profile Page

Google Scholar

Bingjun Xu (徐冰君) Skills & Research Interests

Heterogeneous catalysis

Electrocatalysis

Operando Spectroscopy

Renewable Energy

Top articles of Bingjun Xu (徐冰君)

Title

Journal

Author(s)

Publication Date

Mechanistic insights into CC coupling in electrochemical CO reduction using gold superlattices

Nature Communications

Xiaoju Yang

Chao Rong

Li Zhang

Zhenkun Ye

Zhiming Wei

...

2024/1/24

Understanding the effect of specific adsorption on the vibrational Stark effect of adsorbates on an electrode surface via surface enhanced spectroscopy

Inorganic Chemistry Frontiers

Kaiyue Zhao

Haocheng Xiong

Yuanhui Xiao

Haisheng Su

Deyin Wu

...

2024

Influence of electric double layer rigidity on CO adsorption and electroreduction rate

Nature Communications

Jiajie Hou

Bingjun Xu

Qi Lu

2024/3/2

Efficient conversion of propane in a microchannel reactor at ambient conditions

Nature Communications

Chunsong Li

Haochen Zhang

Wenxuan Liu

Lin Sheng

Mu-Jeng Cheng

...

2024/1/29

Benchmarking of commercial Cu catalysts in CO 2 electro-reduction using a gas-diffusion type microfluidic flow electrolyzer

Chemical Communications

Haocheng Xiong

Jing Li

Donghuan Wu

Bingjun Xu

Qi Lu

2023

Interface synergism and engineering of Pd/Co@ NC for direct ethanol fuel cells

Nature Communications

Jinfa Chang

Guanzhi Wang

Xiaoxia Chang

Zhenzhong Yang

Han Wang

...

2023/3/11

Rationalizing kinetic behaviors of isolated boron sites catalyzed oxidative dehydrogenation of propane

Nature Communications

Hao Tian

Wenying Li

Linhai He

Yunzhu Zhong

Shutao Xu

...

2023/10/16

Activation of light alkanes at room temperature and ambient pressure

Nature Catalysis

Haochen Zhang

Chunsong Li

Wenxuan Liu

Guangsheng Luo

William A Goddard III

...

2023/8

Recent progress in electrochemical nitrogen reduction on transition metal nitrides

Xiaoju Yang

Bingjun Xu

Jingguang G Chen

Xuan Yang

2023/3/8

Origin and effect of surface oxygen-containing species on electrochemical CO or CO2 reduction reactions

Xiaoxia Chang

Ming He

Qi Lu

Bingjun Xu

2023/1

Kinetic investigations of oxidative dehydrogenation of propane on boron oxide in confined spaces

Catalysis Today

Hao Tian

Yiwei Liu

Bingjun Xu

2023/8/1

Bifunctional Near‐Neutral Electrolyte Enhances Oxygen Evolution Reaction

Angewandte Chemie

Kaiyue Zhao

Yu Tao

Linke Fu

Chen Li

Bingjun Xu

2023/10/9

Correlating the experimentally determined CO adsorption enthalpy with the electrochemical CO reduction performance on Cu surfaces

Angewandte Chemie International Edition

Haocheng Xiong

Qiwen Sun

Kedang Chen

Yifei Xu

Xiaoxia Chang

...

2023/3/1

CO Binding Energy is an Incomplete Descriptor of Cu‐Based Catalysts for the Electrochemical CO2 Reduction Reaction

Angewandte Chemie International Edition

Wenqiang Gao

Yifei Xu

Haocheng Xiong

Xiaoxia Chang

Qi Lu

...

2023/11/20

Synergistically mitigating electron back-donation by single-atomic Fe–N–C and alloying to boost CO-tolerance of Pt in hydrogen oxidation

ACS Catalysis

Zihao Dong

Yang Nan

Tang Tang

Xiao-Zhi Liu

Jiaju Fu

...

2023/5/25

Experimental evidence of distinct sites for CO2-to-CO and CO conversion on Cu in the electrochemical CO2 reduction reaction

Nature Catalysis

Wenqiang Gao

Yifei Xu

Linke Fu

Xiaoxia Chang

Bingjun Xu

2023/10

Weak CO binding sites induced by Cu–Ag interfaces promote CO electroreduction to multi-carbon liquid products

Nature Communications

Jing Li

Haocheng Xiong

Xiaozhi Liu

Donghuan Wu

Dong Su

...

2023/2/8

Unraveling Intrinsic Electronic Factors in Thermocatalytic (Hemi-) Hydrogenation of Ethylene and Acetylene with Electric Polarization

ACS Catalysis

Qikai Shen

Hanwen Yang

Kaiyue Zhao

Leyu Liu

Qiwen Sun

...

2023/10/30

Site Diversity and Mechanism of Metal‐Exchanged Zeolite Catalyzed Non‐Oxidative Propane Dehydrogenation

Yong Yuan

Zhaoqi Zhao

Raul F Lobo

Bingjun Xu

2023/5

Atomically Dispersed N/O-Coordinated Cobalt Catalyst Enables Aerobic Oxygenation of Olefins under Ambient Conditions

ACS Catal.

Kaiyue Zhao

Qikai Shen

Yu Tao

Jieran Li

Maolin Wang

...

2023

See List of Professors in Bingjun Xu (徐冰君) University(Peking University)

Co-Authors

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