Jaephil Cho

About Jaephil Cho

Jaephil Cho, With an exceptional h-index of 135 and a recent h-index of 100 (since 2020), a distinguished researcher at Ulsan National Institute of Science and Technology, specializes in the field of battery, nanomaterials, catalysts.

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

Grain Boundary Tailors the Local Chemical Environment on Iridium Surface for Alkaline Electrocatalytic Hydrogen Evolution

Substantial Impact of Built‐in Electric Field and Electrode Potential on the Alkaline Hydrogen Evolution Reaction of Ru− CoP Urchin Arrays

Progress and Perspectives on the Development of Pouch‐Type Lithium Metal Batteries

Constructing Interfacial Oxygen Vacancy and Ruthenium Lewis Acid–Base Pairs to Boost the Alkaline Hydrogen Evolution Reaction Kinetics

Composite negative electrode active material, method of producing the same, and negative electrode and lithium secondary battery including the same

Composite positive electrode active material for lithium secondary battery, preparation method thereof, and lithium secondary battery including positive electrode including the …

2D Ruthenium–Chromium Oxide with Rich Grain Boundaries Boosts Acidic Oxygen Evolution Reaction Kinetics

Composite anode active material, method of preparing the same, and lithium secondary battery including anode including composite anode active material

Jaephil Cho Information

University

Position

(Ulsan National Institute of Science and Technology)

Citations(all)

69005

Citations(since 2020)

33952

Cited By

52360

hIndex(all)

135

hIndex(since 2020)

100

i10Index(all)

398

i10Index(since 2020)

324

Email

University Profile Page

Ulsan National Institute of Science and Technology

Google Scholar

View Google Scholar Profile

Jaephil Cho Skills & Research Interests

battery

nanomaterials

catalysts

Top articles of Jaephil Cho

Title

Journal

Author(s)

Publication Date

Grain Boundary Tailors the Local Chemical Environment on Iridium Surface for Alkaline Electrocatalytic Hydrogen Evolution

Angewandte Chemie International Edition

L. Hou

Z. Li

H. Jang

Min Gyu Kim

J. Cho*

...

2024/1/6

Substantial Impact of Built‐in Electric Field and Electrode Potential on the Alkaline Hydrogen Evolution Reaction of Ru− CoP Urchin Arrays

Angewandte Chemie International Edition

Shangguo Liu

Zijian Li

Yaxiang Chang

Min Gyu Kim

Haeseong Jang

...

2024/3/18

Progress and Perspectives on the Development of Pouch‐Type Lithium Metal Batteries

Yulin Jie

Chao Tang

Yaolin Xu

Youzhang Guo

Wanxia Li

...

2024/2/12

Constructing Interfacial Oxygen Vacancy and Ruthenium Lewis Acid–Base Pairs to Boost the Alkaline Hydrogen Evolution Reaction Kinetics

Angewandte Chemie

Qing Qin

Haeseong Jang

Xiaoli Jiang

Liu Wang

Xuefeng Wang

...

2024/1/15

Composite negative electrode active material, method of producing the same, and negative electrode and lithium secondary battery including the same

2024/4/9

Composite positive electrode active material for lithium secondary battery, preparation method thereof, and lithium secondary battery including positive electrode including the …

2021/9/9

2D Ruthenium–Chromium Oxide with Rich Grain Boundaries Boosts Acidic Oxygen Evolution Reaction Kinetics

Small

Xuhao Zhao

Zijian Li

Haeseong Jang

Xiaoqian Wei

Liu Wang

...

2024/2/13

Composite anode active material, method of preparing the same, and lithium secondary battery including anode including composite anode active material

2024/2/13

Exploring the degradation pathways of a nickel-rich cathode during high-temperature storage in high-energy lithium-ion batteries

Journal of Materials Chemistry A

Hyungyeon Cha

Jaeseong Hwang

Taeyong Lee

Jihyeon Kang

Minjoon Park

...

2023

Analysis of Differences in Electrochemical Performance Between Coin and Pouch Cells for Lithium‐Ion Battery Applications

Energy & Environmental Materials

Yeonguk Son

Hyungyeon Cha

Taeyong Lee

Yujin Kim

Adam Boies

...

2023/4/7

Design strategies of ruthenium‐based materials toward alkaline hydrogen evolution reaction

Liqiang Hou

Haeseong Jang

Xiumin Gu

Xuemei Cui

Jiachen Tang

...

2023/9

Carbide-mediated catalytic hydrogenolysis: defects in graphene on a carbonaceous lithium host for liquid and all-solid-state lithium metal batteries

Energy & Environmental Science

Namhyung Kim

Hyungyeon Cha

Sujong Chae

Taeyong Lee

Yoonkwang Lee

...

2023

Issues impeding the commercialization of laboratory innovations for energy-dense Si-containing lithium-ion batteries

Namhyung Kim

Yujin Kim

Jaekyung Sung

Jaephil Cho

2023/9

Positive electrode active material for rechargeable lithium battery, method of preparing the same, and rechargeable lithium battery

2023/3/30

Investigation of mass loading of cathode materials for high energy lithium-ion batteries

Electrochemistry Communications

Yujin Kim†

Moonjin Kim†

Taeyong Lee

Eunchae Kim

Minju An

...

2023/2

Full‐Hexacyanometallate Aqueous Redox Flow Batteries Exceeding 1.5 V in an Aqueous Solution

Advanced Energy Materials

Ji‐Eun Jang

Ryeong‐ah Kim

S Jayasubramaniyan

Chanhee Lee

Jieun Choi

...

2023/7/7

New Ion Substitution Method to Enhance Electrochemical Reversibility of Co‐Rich Layered Materials for Li‐Ion Batteries (Adv. Energy Mater. 1/2023).

Advanced Energy Materials

Pilgun Oh

Jeongsik Yun

Jae Hong Choi

Gyutae Nam

Seohyeon Park

...

2023/1/6

Surface-treated active materials and surface treatment method thereof

2023/7/6

Suppressing Deformation of Silicon Anodes via Interfacial Synthesis for Fast‐Charging Lithium‐Ion Batteries

Advanced Energy Materials

Taeyong Lee

Namhyung Kim

Jiyun Lee

Yoonkwang Lee

Jaekyung Sung

...

2023/11

EES Catalysis

Ricardo Urrego-Ortiz

Santiago Builes

Francesc Illas

Federico Calle-Vallejo

2024

See List of Professors in Jaephil Cho University(Ulsan National Institute of Science and Technology)