Taeho Yoon

Assistant Professor

Kyungpook National University
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South Korea

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About

Dr. Taeho Yoon is an Assistant Professor at Kyung Hee University in South Korea. His research primarily focuses on energy storage systems, including lithium metal batteries and electrochemical supercapacitors, as well as the development of innovative catalytic systems for hydrogen production. Recent articles authored by Dr. Yoon explore various topics, including the enhancement of thermal stability in polymer separators and the fabrication of high-performance supercapacitors. His work also investigates the impact of electrolyte decomposition on copper corrosion and the application of biowaste in enzymatic processes.

Articles (22)

Strategies for Enhancing the Stability of Lithium Metal Anodes in Solid-State Electrolytes

The current commercially used anode material, graphite, has a theoretical capacity of only 372 mAh/g, leading to a relatively low energy density. Lithium (Li) metal is a promising candidate as an anode for enhancing energy density; however, challenges related to safety and performance arise due to Li’s dendritic growth, which needs to be addressed. Owing to these critical issues in Li metal batteries, all-solid-state lithium-ion batteries (ASSLIBs) have attracted considerable interest due to their superior energy density and enhanced safety features. Among the key components of ASSLIBs, solid-state electrolytes (SSEs) play a vital role in determining their overall performance. Various types of SSEs, including sulfides, oxides, and polymers, have been extensively investigated for Li metal anodes. Sulfide SSEs have demonstrated high ion conductivity; however, dendrite formation and a limited electrochemical window hinder the commercialization of ASSLIBs due to safety concerns. Conversely, oxide SSEs exhibit a wide electrochemical window, but compatibility issues with Li metal lead to interfacial resistance problems. Polymer SSEs have the advantage of flexibility; however their limited ion conductivity poses challenges for commercialization. This review aims to provide an overview of the distinctive characteristics and inherent challenges associated with each SSE type for Li metal anodes while also proposing potential pathways for future enhancements based on prior research findings.

Year:

2024

Collaborators (10)

Youngsoo Kim

Assistant Professor

Yeungnam University

SOUTH KOREA

Akbar Mohammad

Assistant Professor

Yeungnam University

SOUTH KOREA

Oh Chae

Gachon University

SOUTH KOREA

Md Rezaul Karim

Assistant Professor

Yeungnam University

SOUTH KOREA

Heechul Jung

Assistant Professor

Dong-A University

SOUTH KOREA

Jung Tae Park

Assistant Professor

Konkuk University

SOUTH KOREA

Ji Heon Ryu

Professor

Korea University of Science and Technology

SOUTH KOREA

Ibrahim M. Mehedi

-

SAUDI ARABIA

Mohd Imran

College of Engineering

SAUDI ARABIA

Ahmad A. Jiman

-

SAUDI ARABIA
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