Gurpreet Kour

About Gurpreet Kour

Gurpreet Kour, With an exceptional h-index of 9 and a recent h-index of 9 (since 2020), a distinguished researcher at Queensland University of Technology, specializes in the field of 2D materials, Electro-catalysis, Electrochemical reduction reactions, Energy conversion and storage.

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

Computational screening of single-atom alloys TM@Ru(0001) for enhanced electrochemical nitrogen reduction reaction

Highly efficient Siamese‐twin porphyrin‐based complex for the electrochemical reduction of CO to ethanol

Single Copper Atoms Supported on ZnS as an Efficient Catalyst for Electrochemical Reduction of CO to CH3OH

First Principles Studies of Mononuclear and Dinuclear Pacman Complexes for Electrocatalytic Reduction of CO2

Synthesis, Thermal Analysis, and Crystal Structure of Hydrogen Bonded Mesogen Derived from 4-Octylbenzoic Acid and 4, 4'-Bipyridine

Electrochemical reduction of carbon dioxide on precise number of Fe atoms anchored graphdiyne

Computational screening of transition metal–phthalocyanines for the electrochemical reduction of carbon dioxide

Cuδ+ active sites stabilization through Mott-Schottky effect for promoting highly efficient conversion of carbon monoxide into n-propanol

Gurpreet Kour Information

University

Position

School of Chemistry and Physics

Citations(all)

323

Citations(since 2020)

321

Cited By

92

hIndex(all)

9

hIndex(since 2020)

9

i10Index(all)

9

i10Index(since 2020)

9

Email

University Profile Page

Google Scholar

Gurpreet Kour Skills & Research Interests

2D materials

Electro-catalysis

Electrochemical reduction reactions

Energy conversion and storage

Top articles of Gurpreet Kour

Computational screening of single-atom alloys TM@Ru(0001) for enhanced electrochemical nitrogen reduction reaction

Journal of Material Chemistry A

2022/1/13

Highly efficient Siamese‐twin porphyrin‐based complex for the electrochemical reduction of CO to ethanol

ChemNanoMat

2021/4/29

Single Copper Atoms Supported on ZnS as an Efficient Catalyst for Electrochemical Reduction of CO to CH3OH

ChemNanoMat

2020/12

First Principles Studies of Mononuclear and Dinuclear Pacman Complexes for Electrocatalytic Reduction of CO2

Catalysis Science and Technology

2020/11/5

Synthesis, Thermal Analysis, and Crystal Structure of Hydrogen Bonded Mesogen Derived from 4-Octylbenzoic Acid and 4, 4'-Bipyridine

Crystallography Reports

2020/11

Electrochemical reduction of carbon dioxide on precise number of Fe atoms anchored graphdiyne

Journal of CO2 Utilization

2020/4/1

Computational screening of transition metal–phthalocyanines for the electrochemical reduction of carbon dioxide

The Journal of Physical Chemistry C

2020/3/12

Cuδ+ active sites stabilization through Mott-Schottky effect for promoting highly efficient conversion of carbon monoxide into n-propanol

Journal of Catalysis

2020/2/1

[formula omitted] active sites stabilization through Mott-Schottky effect for promoting highly efficient conversion of carbon monoxide into n-propanol

Journal of catalysis

2020

See List of Professors in Gurpreet Kour University(Queensland University of Technology)

Co-Authors

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