Yong-Tae Kim

About Yong-Tae Kim

Yong-Tae Kim, With an exceptional h-index of 62 and a recent h-index of 45 (since 2020), a distinguished researcher at Pohang University of Science and Technology, specializes in the field of Fuel cells, Electolysis, Electrocatalysts.

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

Non-oxidative direct conversion of methane: Improved reactivity via linkage with dehydroaromatization

Carbon-efficient reaction optimization of nonoxidative direct methane conversion based on the integrated reactor system

Enhanced durability of automotive fuel cells via selectivity implementation by hydrogen spillover on the electrocatalyst surface

Lithiation-Regulated Iron Oxide Heterostructure for Hydrogen Evolution Reaction: Optimized Degree of Crystallinity for Enhanced Electrochemical Activity

Methane direct conversion to olefins, aromatics, and hydrogen over silica entrapped bimetallic MeFe-SiO2 (Me= Co, Ni, Pd, Pt) catalysts

Anti-aging and Anti-dementia Activities of Different Solvent Extracts from Silvetia siliquosa

Electroconductive, adhesive, non‐swelling, and viscoelastic hydrogels for bioelectronics

Efficient Alkaline Hydrogen Evolution Reaction Using Superaerophobic Ni Nanoarrays with Accelerated H2 Bubble Release

Yong-Tae Kim Information

University

Position

___

Citations(all)

15754

Citations(since 2020)

7659

Cited By

11478

hIndex(all)

62

hIndex(since 2020)

45

i10Index(all)

294

i10Index(since 2020)

159

Email

University Profile Page

Google Scholar

Yong-Tae Kim Skills & Research Interests

Fuel cells

Electolysis

Electrocatalysts

Top articles of Yong-Tae Kim

Non-oxidative direct conversion of methane: Improved reactivity via linkage with dehydroaromatization

Fuel Processing Technology

2024/6/1

Carbon-efficient reaction optimization of nonoxidative direct methane conversion based on the integrated reactor system

Chemical Engineering Journal

2024/2/1

Enhanced durability of automotive fuel cells via selectivity implementation by hydrogen spillover on the electrocatalyst surface

ACS Energy Letters

2023/4/14

Lithiation-Regulated Iron Oxide Heterostructure for Hydrogen Evolution Reaction: Optimized Degree of Crystallinity for Enhanced Electrochemical Activity

ACS Sustainable Chemistry & Engineering

2023/4/7

Methane direct conversion to olefins, aromatics, and hydrogen over silica entrapped bimetallic MeFe-SiO2 (Me= Co, Ni, Pd, Pt) catalysts

Molecular Catalysis

2023/1/15

Anti-aging and Anti-dementia Activities of Different Solvent Extracts from Silvetia siliquosa

Korean Journal of Fisheries and Aquatic Sciences

2023

Electroconductive, adhesive, non‐swelling, and viscoelastic hydrogels for bioelectronics

Advanced Materials

2023/1

Efficient Alkaline Hydrogen Evolution Reaction Using Superaerophobic Ni Nanoarrays with Accelerated H2 Bubble Release

Advanced Materials

2023/12

Fe─ N─ C Electrocatalyst for Enhancing Fe (II)/Fe (III) Redox Kinetics in Thermo‐Electrochemical Cells

Advanced Functional Materials

2023/11

Enhanced hydrogen desorption via charge transfer in Pt Nanoclusters/ReS2 hybrid electrocatalyst for efficient hydrogen evolution reaction

Journal of Power Sources

2023/6

Enhancing durability of automotive fuel cells via selective electrical conductivity induced by tungsten oxide layer coated directly on membrane electrode assembly

Science Advances

2023/9/27

Unveiling the complexity of non-oxidative coupling of methane: A simplified kinetics approach

Chemical Engineering Journal

2023/8/15

Deteriorated balance between activity and stability via Ru incorporation into Ir-based oxygen evolution nanostructures

ACS Catalysis

2023/8/11

Fast Electron Transfers of Non-Noble-Metal Tungsten Carbide Electrodes for Aqueous Thermo-Electrochemical Cells in Neutral Media

ACS Applied Energy Materials

2023/6/12

Effect of silicon carbide-based iron catalyst on reactor optimization for non-oxidative direct conversion of methane

Journal of Energy Chemistry

2023/6/1

Enhancement of the hydrogen oxidation reaction in alkaline media via a bi-functional effect using tantalum as an oxophilic agent on NiMo/C

ACS Catalysis

2023/5/3

Cathodic protection system against a reverse-current after shut-down in zero-gap alkaline water electrolysis

JACS Au

2022/8/22

Stainless steel: a high potential material for green electrochemical energy storage and conversion

2022/7/15

Flexible anodic SnO2 nanoporous structures uniformly coated with polyaniline as a binder-free anode for lithium ion batteries

Journal of Electroanalytical Chemistry

2022/6/1

Promoting oxygen evolution reaction induced by synergetic geometric and electronic effects of IrCo thin-film electrocatalysts

ACS Catalysis

2022/5/12

See List of Professors in Yong-Tae Kim University(Pohang University of Science and Technology)