Tanyuan Wang

About Tanyuan Wang

Tanyuan Wang, With an exceptional h-index of 41 and a recent h-index of 39 (since 2020), a distinguished researcher at Huazhong University of Science and Technology, specializes in the field of electrochemistry electrocatalysis nanomaterials.

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

Single-atom Co dispersed on polyoxometalate derivatives confined in bamboo-like carbon nanotubes enabling efficient dual-site lattice oxygen mediated oxygen evolution …

Enhancing the performance of platinum group metal-based electrocatalysts through nonmetallic element doping

In Situ Dissociated Chalcogenide Anions Regulate the Bi-Catalyst/Electrolyte Interface with Accelerated Surface Reconstruction toward Efficient CO2 Reduction

Tuning metal-support interaction of Pt-based electrocatalysts for hydrogen energy conversion

Atomically dispersed Zn-Co-NC catalyst boosting efficient and robust oxygen reduction catalysis in acid via stabilizing Co-N bonds

A sodium-ion-conducted asymmetric electrolyzer to lower the operation voltage for direct seawater electrolysis

Inducing Covalent Atomic Interaction in Intermetallic Pt Alloy Nanocatalysts for High‐Performance Fuel Cells

Reducible Co3+–O Sites of Co–Ni–P–Ox on CeO2 Nanorods Boost Acidic Water Oxidation via Interfacial Charge Transfer-Promoted Surface Reconstruction

Tanyuan Wang Information

University

Position

___

Citations(all)

6148

Citations(since 2020)

4713

Cited By

3195

hIndex(all)

41

hIndex(since 2020)

39

i10Index(all)

54

i10Index(since 2020)

53

Email

University Profile Page

Google Scholar

Tanyuan Wang Skills & Research Interests

electrochemistry electrocatalysis nanomaterials

Top articles of Tanyuan Wang

Single-atom Co dispersed on polyoxometalate derivatives confined in bamboo-like carbon nanotubes enabling efficient dual-site lattice oxygen mediated oxygen evolution …

Energy & Environmental Science

2024

Enhancing the performance of platinum group metal-based electrocatalysts through nonmetallic element doping

2024/1/1

Tanyuan Wang
Tanyuan Wang

H-Index: 27

Qing Li
Qing Li

H-Index: 14

In Situ Dissociated Chalcogenide Anions Regulate the Bi-Catalyst/Electrolyte Interface with Accelerated Surface Reconstruction toward Efficient CO2 Reduction

ACS Catalysis

2023/12/22

Tuning metal-support interaction of Pt-based electrocatalysts for hydrogen energy conversion

2023/12

Tanyuan Wang
Tanyuan Wang

H-Index: 27

Qing Li
Qing Li

H-Index: 14

Atomically dispersed Zn-Co-NC catalyst boosting efficient and robust oxygen reduction catalysis in acid via stabilizing Co-N bonds

Fundamental Research

2023/11/1

A sodium-ion-conducted asymmetric electrolyzer to lower the operation voltage for direct seawater electrolysis

Nature Communications

2023/7/4

Inducing Covalent Atomic Interaction in Intermetallic Pt Alloy Nanocatalysts for High‐Performance Fuel Cells

Angewandte Chemie International Edition

2023/6/5

Reducible Co3+–O Sites of Co–Ni–P–Ox on CeO2 Nanorods Boost Acidic Water Oxidation via Interfacial Charge Transfer-Promoted Surface Reconstruction

ACS Catalysis

2023/3/30

Recent progress in C–N coupling for electrochemical CO2 reduction with inorganic nitrogenous species in aqueous solution

2023/2/1

Si Doping Enables Activity and Stability Enhancement on Atomically Dispersed Fe−Nx/C Electrocatalysts for Oxygen Reduction in Acid

ChemSusChem

2023/1/9

Designing active and stable Ir-based catalysts for the acidic oxygen evolution reaction

Industrial Chemistry & Materials

2023

Tanyuan Wang
Tanyuan Wang

H-Index: 27

Qing Li
Qing Li

H-Index: 14

Effective Approaches for Designing Stable M–Nx/C Oxygen‐Reduction Catalysts for Proton‐Exchange‐Membrane Fuel Cells

2022/12

Rationally designing efficient electrocatalysts for direct seawater splitting: Challenges, achievements, and promises

2022/11/7

Protrusion‐Rich Cu@ NiRu Core@ shell Nanotubes for Efficient Alkaline Hydrogen Evolution Electrocatalysis

Small

2022/8

Regulating Pd-catalysis for electrocatalytic CO2 reduction to formate via intermetallic PdBi nanosheets

Chinese Journal of Catalysis

2022/7/1

Molybdenum‐doped ordered L10‐PdZn nanosheets for enhanced oxygen reduction electrocatalysis

SusMat

2022/6

Breaking the scaling relations of oxygen evolution reaction on amorphous NiFeP nanostructures with enhanced activity for overall seawater splitting

Applied Catalysis B: Environmental

2022/3/1

Yolk@ Shell structured MnS@ nitrogen-doped carbon as a sulfur host and polysulfide conversion booster for lithium/sodium sulfur batteries

ACS Applied Energy Materials

2021/3/30

Engineering the atomic arrangement of bimetallic catalysts for electrochemical CO 2 reduction

Chemical Communications

2021

An effective dual-modification strategy to enhance the performance of LiNi 0.6 Co 0.2 Mn 0.2 O 2 cathode for Li-ion batteries

Nanoscale

2021

See List of Professors in Tanyuan Wang University(Huazhong University of Science and Technology)

Co-Authors

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