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Dive into the research topics where Minchul Jang is active.

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Featured researches published by Minchul Jang.


ACS Nano | 2018

Two-Dimensional Phosphorene-Derived Protective Layers on a Lithium Metal Anode for Lithium-Oxygen Batteries

Young Jin Kim; Dongho Koo; Seongmin Ha; Sung Chul Jung; Taeeun Yim; Hanseul Kim; Seung Kyo Oh; Dong-Min Kim; Aram Choi; Yongku Kang; Kyoung Han Ryu; Minchul Jang; Young-Kyu Han; Seung M. Oh; Kyu Tae Lee

Lithium-oxygen (Li-O2) batteries are desirable for electric vehicles because of their high energy density. Li dendrite growth and severe electrolyte decomposition on Li metal are, however, challenging issues for the practical application of these batteries. In this connection, an electrochemically active two-dimensional phosphorene-derived lithium phosphide is introduced as a Li metal protective layer, where the nanosized protective layer on Li metal suppresses electrolyte decomposition and Li dendrite growth. This suppression is attributed to thermodynamic properties of the electrochemically active lithium phosphide protective layer. The electrolyte decomposition is suppressed on the protective layer because the redox potential of lithium phosphide layer is higher than that of electrolyte decomposition. Li plating is thermodynamically unfavorable on lithium phosphide layers, which hinders Li dendrite growth during cycling. As a result, the nanosized lithium phosphide protective layer improves the cycle performance of Li symmetric cells and Li-O2 batteries with various electrolytes including lithium bis(trifluoromethanesulfonyl)imide in N,N-dimethylacetamide. A variety of ex situ analyses and theoretical calculations support these behaviors of the phosphorene-derived lithium phosphide protective layer.


Archive | 2007

Preparation method of lithium-metal composite oxides

Sung-Kyun Chang; Euiyong Bang; Minchul Jang; Sanghoon Choy; Ki-Young Lee; Wan-Jae Myeong; Kyu-Ho Song; Joo-Hyeong Lee; Young-Sik Hahn; Myung-Ho Cho; Yong-Tae Lee


Archive | 2006

Secondary battery of improved lithium ion mobility and cell capacity

Sung Kyun Chang; Seo-Jae Lee; Sanghoon Choy; Euiyong Bang; Minchul Jang; Ki-Young Lee


Archive | 2007

Lithium-metal composite oxides and electrochemical device using the same

Sung-Kyun Chang; Euiyong Bang; Minchul Jang; Sanghoon Choy; Ki-Young Lee; Saebomi Park; Wan-Jae Myeong; Kyu-Ho Song; Joo-Hyeong Lee; Young-Sik Hahn; Myung-Ho Cho


Archive | 2006

Middle or large-sized battery pack of increased safety

Hanho Lee; Youngjoon Shin; Jeeho Kim; Jin Woong Ha; Jaeseong Yeo; Minchul Jang


Archive | 2005

Safety element for battery and battery with the same

Jeong-Ju Cho; Jae-hyun Cheonggu Narae Apt Lee; Sung-kyun Songgangmaul Apt Chang; Minchul Jang; Sun-Sik Shin; Euiyong Bang; Joon-Hwan Lee; Soo-hyun Yeonsan Ssangyong Apt Ha


Archive | 2009

Battery module having cooling means, and middle or large-sized battery pack containing the same

Jin Kyu Lee; Hee Soo Yoon; Bumhyun Lee; Dal Moh Kang; Minchul Jang; Jongmoon Yoon


Archive | 2006

Middle or large-sized battery pack having a plurality of battery cells in a compact structure

Hanho Lee; Youngjoon Shin; Jeeho Kim; Jin Woong Ha; Jaeseong Yeo; Minchul Jang


Archive | 2013

BATTERY MODULE AND BUS BAR APPLIED TO BATTERY MODULE

Junseok Choi; Jinkyu Lee; Taehwan Roh; Seung-Don Choi; Seongtae Kim; TaeHyuck Kim; Jung-Hoon Yang; Minchul Jang; In-Cheol Shin; Dal-Mo Kang


Chemistry of Materials | 2017

Non-Grignard and Lewis Acid-Free Sulfone Electrolytes for Rechargeable Magnesium Batteries

Sung-Jin Kang; Sung-Chul Lim; Hyeonji Kim; Jongwook W. Heo; Sunwook Hwang; Minchul Jang; Dookyong Yang; Seung-Tae Hong; Hochun Lee

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