Xue Wang

Xue Wang

University of Toronto

H-index: 41

North America-Canada

About Xue Wang

Xue Wang, With an exceptional h-index of 41 and a recent h-index of 37 (since 2020), a distinguished researcher at University of Toronto, specializes in the field of nanomaterials, catalysis, electrocatalysis, energy.

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

Superexchange-stabilized long-distance Cu sites in rock-salt-ordered double perovskite oxides for CO2 electromethanation

Accelerating multielectron reduction at CuxO nanograins interfaces with controlled local electric field

Nanograin-Boundary-Abundant Cu2O-Cu Nanocubes with High C2+ Selectivity and Good Stability during Electrochemical CO2 Reduction at a Current Density of 500 mA/cm2

Single-site decorated copper enables energy- and carbon-efficient CO2 methanation in acidic conditions

Constrained C2 adsorbate orientation enables CO-to-acetate electroreduction

CuC(O) Interfaces Deliver Remarkable Selectivity and Stability for CO2 Reduction to C2+ Products at Industrial Current Density of 500 mA cm−2

Carbon-efficient carbon dioxide electrolysers

High‐Rate and Selective CO2 Electrolysis to Ethylene via Metal–Organic‐Framework‐Augmented CO2 Availability

Xue Wang Information

University

Position

Postdoctoral Fellow ; PhD Xiamen University

Citations(all)

8483

Citations(since 2020)

6820

Cited By

3263

hIndex(all)

41

hIndex(since 2020)

37

i10Index(all)

59

i10Index(since 2020)

57

Email

University Profile Page

University of Toronto

Google Scholar

View Google Scholar Profile

Xue Wang Skills & Research Interests

nanomaterials

catalysis

electrocatalysis

energy

Top articles of Xue Wang

Title

Journal

Author(s)

Publication Date

Superexchange-stabilized long-distance Cu sites in rock-salt-ordered double perovskite oxides for CO2 electromethanation

Nature Communications

Jiawei Zhu

Yu Zhang

Zitao Chen

Zhenbao Zhang

Xuezeng Tian

...

2024/2/21

Accelerating multielectron reduction at CuxO nanograins interfaces with controlled local electric field

Nature Communications

Weihua Guo

Siwei Zhang

Junjie Zhang

Haoran Wu

Yangbo Ma

...

2023/11/15

Nanograin-Boundary-Abundant Cu2O-Cu Nanocubes with High C2+ Selectivity and Good Stability during Electrochemical CO2 Reduction at a Current Density of 500 mA/cm2

ACS nano

Qiqi Wu

Ruian Du

Peng Wang

Geoffrey IN Waterhouse

Jia Li

...

2023/6/20

Single-site decorated copper enables energy- and carbon-efficient CO2 methanation in acidic conditions

Nature communications

Mengyang Fan

Rui Kai Miao

Pengfei Ou

Yi Xu

Zih-Yi Lin

...

2023/6/7

Constrained C2 adsorbate orientation enables CO-to-acetate electroreduction

Nature

Jian Jin

Joshua Wicks

Qiuhong Min

Jun Li

Yongfeng Hu

...

2023/5/25

CuC(O) Interfaces Deliver Remarkable Selectivity and Stability for CO2 Reduction to C2+ Products at Industrial Current Density of 500 mA cm−2

Small

Ruian Du

Qiqi Wu

Shiyi Zhang

Peng Wang

Zhengjian Li

...

2023/7

Carbon-efficient carbon dioxide electrolysers

Adnan Ozden

F Pelayo García de Arquer

Jianan Erick Huang

Joshua Wicks

Jared Sisler

...

2022/7

High‐Rate and Selective CO2 Electrolysis to Ethylene via Metal–Organic‐Framework‐Augmented CO2 Availability

Advanced Materials

Dae‐Hyun Nam

Osama Shekhah

Adnan Ozden

Christopher McCallum

Fengwang Li

...

2022/12

Copper/alkaline earth metal oxide interfaces for electrochemical CO2-to-alcohol conversion by selective hydrogenation

Nature Catalysis

Aoni Xu

Sung-Fu Hung

Ang Cao

Zhenbin Wang

Naiwrit Karmodak

...

2022/12

Ga doping disrupts CC coupling and promotes methane electroproduction on CuAl catalysts

Chem Catalysis

Armin Sedighian Rasouli

Xue Wang

Joshua Wicks

Cao-Thang Dinh

Jehad Abed

...

2022/4/21

Systems engineering of Escherichia coli for n-butane production

Metabolic Engineering

Yilan Liu

Anna Khusnutdinova

Jinjin Chen

David Crisante

Khorcheska Batyrova

...

2022/11/1

A metal-supported single-atom catalytic site enables carbon dioxide hydrogenation

Nature communications

Sung-Fu Hung

Aoni Xu

Xue Wang

Fengwang Li

Shao-Hui Hsu

...

2022/2/10

2022 Roadmap on Low Temperature Electrochemical CO2 Reduction

Journal of Physics: Energy

Ifan EL Stephens

Karen Chan

Alexander Bagger

Shannon W Boettcher

Julien Bonin

...

2022/10/3

Efficient electrosynthesis of n-propanol from carbon monoxide using a Ag–Ru–Cu catalyst

Nature Energy

Xue Wang

Pengfei Ou

Adnan Ozden

Sung-Fu Hung

Jason Tam

...

2022/2

High carbon utilization in CO2 reduction to multi-carbon products in acidic media

Nature Catalysis

Yi Xie

Pengfei Ou

Xue Wang

Zhanyou Xu

Yuguang C Li

...

2022/6

Concentrated Ethanol Electrosynthesis from CO2 via a Porous Hydrophobic Adlayer

ACS Applied Materials & Interfaces

Anthony Robb

Adnan Ozden

Rui Kai Miao

Colin P O’Brien

Yi Xu

...

2022/1/14

Atomistic insights into the nucleation and growth of platinum on palladium nanocrystals

Nature Communications

Wenpei Gao

Ahmed O Elnabawy

Zachary D Hood

Yifeng Shi

Xue Wang

...

2021/6/2

Electroosmotic flow steers neutral products and enables concentrated ethanol electroproduction from CO2

Joule

Rui Kai Miao*

Yi Xu*

Adnan Ozden

Anthony Robb

Colin P O’Brien

...

2021/9/21

Low coordination number copper catalysts for electrochemical CO 2 methanation in a membrane electrode assembly

Nature communications

Yi Xu

Fengwang Li

Aoni Xu

Jonathan P Edwards

Sung-Fu Hung

...

2021/5/18

Ternary Alloys Enable Efficient Production of Methoxylated Chemicals via Selective Electrocatalytic Hydrogenation of Lignin Monomers

Journal of the American Chemical Society

Tao Peng

Taotao Zhuang

Yu Yan

Jin Qian

Graham R Dick

...

2021/10/7

See List of Professors in Xue Wang University(University of Toronto)

Co-Authors

H-index: 188
Edward Sargent

Edward Sargent

University of Toronto

H-index: 50
Jane Y. Howe

Jane Y. Howe

University of Toronto

H-index: 46
Sang-Il Choi

Sang-Il Choi

Kyungpook National University

H-index: 44
Lei Zhang

Lei Zhang

Western University

H-index: 39
Xuan Yang

Xuan Yang

University of Delaware

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