xiangzhi meng

About xiangzhi meng

xiangzhi meng, With an exceptional h-index of 8 and a recent h-index of 8 (since 2020), a distinguished researcher at Westfälische Wilhelms-Universität Münster, specializes in the field of physics, physical chemistry.

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

Kondo Effect of Co-Porphyrin: Remarkable Sensitivity to Adsorption Sites and Orientations

Magnetic Properties of Mn–Triphyrin on Au (111) with Submolecular Resolution

Controlling the spin states of fetbrpp on au (111)

Effect of an axial ligand on the self-assembly of molecular platforms

Azobindungsbildung auf Metalloberflächen

Azo bond formation on metal surfaces

Conformational evolution following the sequential molecular dehydrogenation of PMDI on a Cu (111) surface

Cover Feature: Tunable Thiolate Coordination Networks on Metal Surfaces (ChemNanoMat 10/2020)

xiangzhi meng Information

University

Position

___

Citations(all)

734

Citations(since 2020)

413

Cited By

510

hIndex(all)

8

hIndex(since 2020)

8

i10Index(all)

8

i10Index(since 2020)

8

Email

University Profile Page

Google Scholar

xiangzhi meng Skills & Research Interests

physics

physical chemistry

Top articles of xiangzhi meng

Kondo Effect of Co-Porphyrin: Remarkable Sensitivity to Adsorption Sites and Orientations

Nano Letters

2023/12/27

Magnetic Properties of Mn–Triphyrin on Au (111) with Submolecular Resolution

The Journal of Physical Chemistry C

2023/6/13

Controlling the spin states of fetbrpp on au (111)

ACS nano

2022/11/28

Effect of an axial ligand on the self-assembly of molecular platforms

Physical Chemistry Chemical Physics

2022

Azobindungsbildung auf Metalloberflächen

Angewandte Chemie

2021/1/18

Azo bond formation on metal surfaces

Angewandte Chemie International Edition

2021/1/18

Conformational evolution following the sequential molecular dehydrogenation of PMDI on a Cu (111) surface

Nanoscale Advances

2021

Cover Feature: Tunable Thiolate Coordination Networks on Metal Surfaces (ChemNanoMat 10/2020)

ChemNanoMat

2020/10

Tunable Thiolate Coordination Networks on Metal Surfaces

ChemNanoMat

2020/10

Probing nonequilibrium dynamics of photoexcited polarons on a metal-oxide surface with atomic precision

Physical Review Letters

2020/5/19

See List of Professors in xiangzhi meng University(Westfälische Wilhelms-Universität Münster)

Co-Authors

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