Chunlei Wang

About Chunlei Wang

Chunlei Wang, With an exceptional h-index of 14 and a recent h-index of 13 (since 2020), a distinguished researcher at Kungliga Tekniska högskolan, specializes in the field of catalysis, surface science, synchrotron radiation XPS.

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

CO‐Induced Dimer Decay Responsible for Gem‐Dicarbonyl Formation on a Model Single‐Atom Catalyst

Infrared Reflection Absorption Spectroscopy Setup with Incidence Angle Selection for Surfaces of Non-Metals

CO-induzierte Dimer-Dissoziation verursacht Gem-Dicarbonyl-Bildung auf einem Einzelatom-Katalysator-Modell

Two can be better than one: CO-induced dimer decay responsible for gem-dicarbonyl formation on a model single-atom catalyst

C₂H₄ Adsorption on Rh‐Decorated Fe₃O₄ (001) Surface

A Multitechnique Study of C2H4 Adsorption on Fe3O4(001)

Atomic-Level Studies of CO/Rh₁ and (CO) ₂/Rh₁ Formation on an Fe₃O₄ (001) support

Precise Construction of High Metallicity and High Stability TM1/Cu2O(111) Single-Atom Catalysts by First-Principles

Chunlei Wang Information

University

Position

___

Citations(all)

2635

Citations(since 2020)

2071

Cited By

1464

hIndex(all)

14

hIndex(since 2020)

13

i10Index(all)

15

i10Index(since 2020)

15

Email

University Profile Page

Google Scholar

Chunlei Wang Skills & Research Interests

catalysis

surface science

synchrotron radiation XPS

Top articles of Chunlei Wang

CO‐Induced Dimer Decay Responsible for Gem‐Dicarbonyl Formation on a Model Single‐Atom Catalyst

Angewandte Chemie International Edition

2024/1/31

Infrared Reflection Absorption Spectroscopy Setup with Incidence Angle Selection for Surfaces of Non-Metals

arXiv preprint arXiv:2403.19263

2024/3/28

CO-induzierte Dimer-Dissoziation verursacht Gem-Dicarbonyl-Bildung auf einem Einzelatom-Katalysator-Modell

Angew. Chem. Int. Ed

2024

Two can be better than one: CO-induced dimer decay responsible for gem-dicarbonyl formation on a model single-atom catalyst

2023/9/24

A Multitechnique Study of C2H4 Adsorption on Fe3O4(001)

The Journal of Physical Chemistry C

2023/9/11

Atomic-Level Studies of CO/Rh₁ and (CO) ₂/Rh₁ Formation on an Fe₃O₄ (001) support

2023/9/6

Precise Construction of High Metallicity and High Stability TM1/Cu2O(111) Single-Atom Catalysts by First-Principles

Catalysis Letters

2023/9

Stabilization of Cu2O through Site-Selective Formation of a Co1Cu Hybrid Single-Atom Catalyst

Chemistry of Materials

2022/2/3

Inverse single-site Fe1 (OH) X/Pt (111) model catalyst for preferential oxidation of CO in H2

Nano Research

2022/1

Acetic acid conversion to ketene on Cu2O (1 0 0): Reaction mechanism deduced from experimental observations and theoretical computations

Journal of Catalysis

2021/10/1

HIPPIE: a new platform for ambient-pressure X-ray photoelectron spectroscopy at the MAX IV Laboratory

Journal of synchrotron radiation

2021/3/1

See List of Professors in Chunlei Wang University(Kungliga Tekniska högskolan)