Kai Yuan

About Kai Yuan

Kai Yuan, With an exceptional h-index of 40 and a recent h-index of 37 (since 2020), a distinguished researcher at Nanchang University, specializes in the field of Electrocatalysis, Porous Polymer, Carbon Materials, Supercapacitors, Batteries.

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

Selenium‐Based Catalysts for Efficient Electrocatalysis

Advanced Architectures of Air Electrodes in Zinc–Air Batteries and Hydrogen Fuel Cells

Unlocking the Effect of Chain Length and Terminal Group on Ethylene Glycol Ether Family Toward Advanced Aqueous Electrolytes

Electron‐Donors–Acceptors Interaction Enhancing Electrocatalytic Activity of Metal‐Organic Polymers for Oxygen Reduction

Decrypting the Influence of Axial Coordination on the Electronic Microenvironment of Co-N5 Site for Enhanced Electrocatalytic Reaction

Polycation‐Regulated Electrolyte and Interfacial Electric Fields for Stable Zinc Metal Batteries

Longitudinally Grafting of Graphene with Iron Phthalocyanine‐based Porous Organic Polymer to Boost Oxygen Electroreduction

Zinc-ion capacitors with fast kinetics at a high mass loading

Kai Yuan Information

University

Position

___

Citations(all)

4601

Citations(since 2020)

3866

Cited By

1766

hIndex(all)

40

hIndex(since 2020)

37

i10Index(all)

72

i10Index(since 2020)

58

Email

University Profile Page

Google Scholar

Kai Yuan Skills & Research Interests

Electrocatalysis

Porous Polymer

Carbon Materials

Supercapacitors

Batteries

Top articles of Kai Yuan

Selenium‐Based Catalysts for Efficient Electrocatalysis

2024/4/1

Yonggan Wu
Yonggan Wu

H-Index: 8

Kai Yuan
Kai Yuan

H-Index: 22

Advanced Architectures of Air Electrodes in Zinc–Air Batteries and Hydrogen Fuel Cells

2024/1/12

Bing Wu
Bing Wu

H-Index: 27

Kai Yuan
Kai Yuan

H-Index: 22

Unlocking the Effect of Chain Length and Terminal Group on Ethylene Glycol Ether Family Toward Advanced Aqueous Electrolytes

Small

2024/3/22

Electron‐Donors–Acceptors Interaction Enhancing Electrocatalytic Activity of Metal‐Organic Polymers for Oxygen Reduction

Angewandte Chemie

2023/8/14

Ting Hu
Ting Hu

H-Index: 15

Kai Yuan
Kai Yuan

H-Index: 22

Decrypting the Influence of Axial Coordination on the Electronic Microenvironment of Co-N5 Site for Enhanced Electrocatalytic Reaction

CCS Chemistry

2023/8/1

Polycation‐Regulated Electrolyte and Interfacial Electric Fields for Stable Zinc Metal Batteries

Angewandte Chemie International Edition

2023/7/3

Ting Hu
Ting Hu

H-Index: 15

Kai Yuan
Kai Yuan

H-Index: 22

Longitudinally Grafting of Graphene with Iron Phthalocyanine‐based Porous Organic Polymer to Boost Oxygen Electroreduction

Angewandte Chemie International Edition

2023/5/22

Kai Yuan
Kai Yuan

H-Index: 22

Xiaodong Zhuang
Xiaodong Zhuang

H-Index: 10

Zinc-ion capacitors with fast kinetics at a high mass loading

Chemistry of Materials

2023/5/4

Solute-solvent dual engineering toward versatile electrolyte for high-voltage aqueous zinc-based energy storage devices

Fundamental Research

2023/3/14

Carbon nanocage with maximum utilization of atomically dispersed iron as efficient oxygen electroreduction nanoreactor

Advanced Materials

2023/2

Steering local electronic configuration of Fe–N–C‐based coupling catalysts via ligand engineering for efficient oxygen electroreduction

Advanced Functional Materials

2023/1

Arranging Electronic Localization of PtCu Nanoalloys to Stimulate Improved Oxygen Electroreduction for High-Performance Fuel Cells

CCS Chemistry

2023/11/1

Single-atom sites combined with metal nano-aggregates for efficient electrocatalysis

Energy & Environmental Science

2023/10/23

Yonggan Wu
Yonggan Wu

H-Index: 8

Kai Yuan
Kai Yuan

H-Index: 22

Eliminating Micropore Confinement Effect of Carbonaceous Electrode for Promoting Zn‐Ion Storage Capability

Advanced Materials

2022/8/11

Breaking the Scaling Relationship Limit: From Single-Atom to Dual-Atom Catalysts

Accounts of Materials Research

2022/5/17

Kai Yuan
Kai Yuan

H-Index: 22

Simultaneously Integrate Iron Single Atom and Nanocluster Triggered Tandem Effect for Boosting Oxygen Electroreduction

Small

2022/4

Manipulating the Interlayer Spacing of 3D MXenes with Improved Stability and Zinc‐Ion Storage Capability

Advanced Functional Materials

2022/2

High Energy and Power Zinc Ion Capacitors: A Dual-Ion Adsorption and Reversible Chemical Adsorption Coupling Mechanism

ACS nano

2022/2/7

Deciphering the Precursor–Performance Relationship of Single‐Atom Iron Oxygen Electroreduction Catalysts via Isomer Engineering

Small

2022/3

Ting Hu
Ting Hu

H-Index: 15

Kai Yuan
Kai Yuan

H-Index: 22

Wide Voltage Aqueous Asymmetric Supercapacitors: Advances, Strategies, and Challenges

Advanced Functional Materials

2022/1/19

Jun Huang
Jun Huang

H-Index: 13

Kai Yuan
Kai Yuan

H-Index: 22

See List of Professors in Kai Yuan University(Nanchang University)

Co-Authors

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