Cheng Tang

About Cheng Tang

Cheng Tang, With an exceptional h-index of 62 and a recent h-index of 58 (since 2020), a distinguished researcher at Tsinghua University, specializes in the field of Nanocarbon Material, Electrocatalysis, Graphene, Nitrogen Reduction.

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

Versatile carbon-based materials from biomass for advanced electrochemical energy storage systems

Bridging Laboratory Electrocatalysts with Industrially Relevant Alkaline Water Electrolyzers

Nanoengineering of Porous 2D Structures with Tunable Fluid Transport Behavior for Exceptional H2O2 Electrosynthesis

Probing the electric double layer structure at nitrogen-doped graphite electrodes by constant-potential molecular dynamics simulations

Wide temperature range-and damage-tolerant microsupercapacitors from salt-tolerant, anti-freezing and self-healing organohydrogel via dynamic bonds modulation

Inter‐Metal Interaction with a Threshold Effect in NiCu Dual‐Atom Catalysts for CO2 Electroreduction

Promising energy-storage applications by flotation of graphite ores: A review

Low-Temperature Working Feasibility of Zinc–Air Batteries with Noble Metal-Free Electrocatalysts

Cheng Tang Information

University

Position

or The University of Adelaide

Citations(all)

16833

Citations(since 2020)

14572

Cited By

7457

hIndex(all)

62

hIndex(since 2020)

58

i10Index(all)

92

i10Index(since 2020)

90

Email

University Profile Page

Google Scholar

Cheng Tang Skills & Research Interests

Nanocarbon Material

Electrocatalysis

Graphene

Nitrogen Reduction

Top articles of Cheng Tang

Versatile carbon-based materials from biomass for advanced electrochemical energy storage systems

2024/2/24

Bridging Laboratory Electrocatalysts with Industrially Relevant Alkaline Water Electrolyzers

2024/2/14

Ning Wang
Ning Wang

H-Index: 12

Cheng Tang
Cheng Tang

H-Index: 43

Nanoengineering of Porous 2D Structures with Tunable Fluid Transport Behavior for Exceptional H2O2 Electrosynthesis

Nano Letters

2024/2/7

Probing the electric double layer structure at nitrogen-doped graphite electrodes by constant-potential molecular dynamics simulations

Journal of Energy Chemistry

2024/2/3

Wide temperature range-and damage-tolerant microsupercapacitors from salt-tolerant, anti-freezing and self-healing organohydrogel via dynamic bonds modulation

Journal of Energy Chemistry

2023/3/1

Inter‐Metal Interaction with a Threshold Effect in NiCu Dual‐Atom Catalysts for CO2 Electroreduction

Advanced Materials

2022/11/25

Cheng Tang
Cheng Tang

H-Index: 43

Promising energy-storage applications by flotation of graphite ores: A review

2023/2/15

Low-Temperature Working Feasibility of Zinc–Air Batteries with Noble Metal-Free Electrocatalysts

Renewables

2023/2/8

High-performance environmental adaptive microsupercapacitors from multifunctional hydrogel via modulating ionic hydration and hydrogen bonds

Energy Storage Materials

2023/1/1

Efficient electrochemical upgradation strategies for the biomass derivative furfural

2023

Single-atom catalysts: promotors of highly sensitive and selective sensors

2023

Innovating support and interface for low-iridium catalysts in practical PEM electrolyzers

Chem Catalysis

2023/12/21

Lan Yang
Lan Yang

H-Index: 5

Cheng Tang
Cheng Tang

H-Index: 43

Inductive Effect on Single-Atom Sites

Journal of the American Chemical Society

2023/12/6

Oxygen-vacancy-type Mars–van Krevelen mechanism drives ultrafast dioxygen electroreduction to hydrogen peroxide

Materials Today Energy

2023/12/1

Materials Design and System Innovation for Direct and Indirect Seawater Electrolysis

2023/11/15

Vanadium-based compounds and heterostructures as functional sulfur catalysts for lithium–sulfur battery cathodes

2023/11/1

Cheng Tang
Cheng Tang

H-Index: 43

Green Electrification of the Chemical Industry Toward Carbon Neutrality

Engineering

2023/9/25

Cheng Tang
Cheng Tang

H-Index: 43

Qiang Zhang
Qiang Zhang

H-Index: 18

Lithium‐Ion Batteries Participating in Frequency Regulation through Low‐Destructive Bidirectional Pulsed Current Operation (Adv. Energy Mater. 25/2023)

Advanced Energy Materials

2023/7

Preparation of porous carbon spheres and their application as anode materials for lithium-ion batteries: A review

2023/6/1

CO2 reduction reaction, what’s next?

2023/6/1

See List of Professors in Cheng Tang University(Tsinghua University)

Co-Authors

academic-engine