Ting Fan

About Ting Fan

Ting Fan, With an exceptional h-index of 12 and a recent h-index of 10 (since 2020), a distinguished researcher at Kungliga Tekniska högskolan, specializes in the field of computational chemistry.

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

Is Fe the Most Active Site for Fe/N-Doped Graphdiyne?

CO2 Reduction Mechanism on the Cu2O(110) Surface: A First‐Principles Study

Unifying the Nitrogen Reduction Activity of Anatase and Rutile TiO2 Surfaces

Double-shelled Zn–Co single-atoms enable enhanced conversion kinetics in lithium–sulfur batteries

Self-supported hollow-Co3O4@ CNT: A versatile anode and cathode host material for high-performance lithium-ion and lithium-sulfur batteries

Graphdiyne supported single-atom cobalt catalyst for oxygen reduction reaction: The role of the co-adsorbates

Understanding the role of Cl doping in the oxygen evolution reaction on cuprous oxide by DFT

Nitrogen-doped graphdiyne for efficient electrocatalytic N2 reduction: a first-principles study

Ting Fan Information

University

Position

___

Citations(all)

515

Citations(since 2020)

235

Cited By

382

hIndex(all)

12

hIndex(since 2020)

10

i10Index(all)

14

i10Index(since 2020)

11

Email

University Profile Page

Google Scholar

Ting Fan Skills & Research Interests

computational chemistry

Top articles of Ting Fan

Is Fe the Most Active Site for Fe/N-Doped Graphdiyne?

ACS omega

2024/4/3

Ting Fan
Ting Fan

H-Index: 9

CO2 Reduction Mechanism on the Cu2O(110) Surface: A First‐Principles Study

ChemPhysChem

2023/6/1

Ting Fan
Ting Fan

H-Index: 9

Unifying the Nitrogen Reduction Activity of Anatase and Rutile TiO2 Surfaces

ChemPhysChem

2023/1/17

Ting Fan
Ting Fan

H-Index: 9

Double-shelled Zn–Co single-atoms enable enhanced conversion kinetics in lithium–sulfur batteries

Journal of Materials Chemistry A

2023

Self-supported hollow-Co3O4@ CNT: A versatile anode and cathode host material for high-performance lithium-ion and lithium-sulfur batteries

Journal of Alloys and Compounds

2022/11/5

Graphdiyne supported single-atom cobalt catalyst for oxygen reduction reaction: The role of the co-adsorbates

Chemical Physics Letters

2022/10/1

Ting Fan
Ting Fan

H-Index: 9

Understanding the role of Cl doping in the oxygen evolution reaction on cuprous oxide by DFT

Physical Chemistry Chemical Physics

2022

Ting Fan
Ting Fan

H-Index: 9

Nitrogen-doped graphdiyne for efficient electrocatalytic N2 reduction: a first-principles study

Applied Surface Science

2021/12/30

Gang Wang
Gang Wang

H-Index: 28

Ting Fan
Ting Fan

H-Index: 9

First‐Principles Study on the Molecular Mechanism of Solar‐Driven CO2 Reduction on H‐Terminated Si

ChemSusChem

2020/7/7

First-principles study on the selective hydrogenation of the C O and C C bonds of acrolein on Pt-M-Pt (M= Pt, Cu, Ni, Co) surfaces

Physical Chemistry Chemical Physics (Incorporating Faraday Transactions)

2020/7

Ting Fan
Ting Fan

H-Index: 9

First-principles study on the mechanism of photocatalytic reduction of nitrobenzene on the rutile TiO 2 (110) surface

Physical Chemistry Chemical Physics

2020

Ting Fan
Ting Fan

H-Index: 9

Yi Luo
Yi Luo

H-Index: 10

See List of Professors in Ting Fan University(Kungliga Tekniska högskolan)