RnDCircle Logo
김정태 연구실
동양대학교 게임학부
김정태 교수
기본 정보
연구 분야
논문
구성원

김정태 연구실

동양대학교 게임학부 김정태 교수

본 연구실은 게임공학과 멀티미디어를 기반으로 게임 디자인, 게임 메커닉, 게이미피케이션, 플레이어 경험, 게임 문화예술을 아우르는 연구를 수행하며, 게임을 기술적 시스템이자 문화적 콘텐츠로 이해하고 이를 교육·산업·여가·예술 분야에 확장 적용하는 융합적 접근을 지향한다.

대표 연구 분야
연구 영역 전체보기
게임 디자인 및 게임공학 thumbnail
게임 디자인 및 게임공학
연구 성과 추이
표시된 성과는 수집된 데이터 기준으로 산출되며, 일부 차이가 있을 수 있습니다.

5개년 연도별 논문 게재 수

76총합

5개년 연도별 피인용 수

881총합
주요 논문
3
논문 전체보기
1
article
|
인용수 4
·
2025
Origin and mitigation of premature dead Li formation at the current collector interface in high energy batteries
Keyue Liang, Xintong Yuan, Bo Liu, Hayoung Park, Kaixi Chen, Tianyu Wang, Hao Wu, Jung Tae Kim∥, Kaiyan Liang, Yuzhang Li
IF 30.8
Energy & Environmental Science
SEI similarity on Li and Cu current collectors governs stripping uniformity, influencing dead Li formation and coulombic efficiency.
https://doi.org/10.1039/d5ee02275d
Current (fluid)
Interface (matter)
Energy (signal processing)
Engineering physics
Electrical engineering
Materials science
Environmental science
Nuclear engineering
Engineering
Physics
2
article
|
hybrid
·
인용수 22
·
2025
Localized Eutectic Electrolytes for Stable Aqueous Zinc-Ion Batteries
Huida Lyu, Jung Tae Kim∥, Dongfang Cheng, Xintong Yuan, Mackenzie Anderson, Keyue Liang, Jiayi Yu, Philippe Sautet, Richard B. Kaner, Yuzhang Li
IF 18.2
ACS Energy Letters
Aqueous zinc-ion batteries (AZIBs) have been regarded as promising candidates for large-scale energy storage. However, the poor reversibility of Zn electrodeposition at low current densities still remains a great challenge in developing practical AZIBs. In this work, a localized eutectic electrolyte (LEE) is proposed by introducing trioxane to a baseline eutectic electrolyte, 2.0 M Zn-(OTf)<sub>2</sub> in water/sulfolane (50:50 vol %), for reversible Zn anodes under challenging conditions (low N/P ratios and low current densities). Trioxane serves to disperse the aqueous eutectic domain and construct a solvation-sheath-repelled inner Helmholtz plane, thus regulating charge transfer kinetics to enable further suppression of electrolyte corrosion and improved Zn morphology. Zn||Zn<sub>0.25</sub>V<sub>2</sub>O<sub>5</sub>·<i>n</i>H<sub>2</sub>O full cells with a low N/P ratio (≤4) and a low current density of 100 mA cathode<sup>-1</sup> (corresponding to a 0.33 C rate) exhibit enhanced cycling stability and a prolonged lifespan (nearly 3 months) in the LEE.
https://doi.org/10.1021/acsenergylett.5c00491
Eutectic system
Electrolyte
Aqueous solution
Zinc
Ion
Materials science
Chemical engineering
Inorganic chemistry
Metallurgy
Chemistry
3
article
|
hybrid
·
인용수 24
·
2025
Nitride solid-state electrolytes for all-solid-state lithium metal batteries
Weihan Li, Minsi Li, Haoqi Ren, Jung Tae Kim∥, Ruying Li, Tsun‐Kong Sham, Xueliang Sun
IF 30.8
Energy & Environmental Science
Nitride solid-state electrolytes offer intrinsic stability with lithium metal and improved ionic conductivity. This review highlights advances in their design, synthesis, and application for enabling practical all-solid-state lithium metal batteries.
https://doi.org/10.1039/d4ee04927f
Lithium metal
Solid-state
Lithium (medication)
Electrolyte
Fast ion conductor
Materials science
Nitride
Metal
Chemical engineering
Inorganic chemistry

주식회사 디써클

대표 장재우,이윤구서울특별시 강남구 역삼로 169, 명우빌딩 2층 (TIPS타운 S2)대표 전화 0507-1312-6417이메일 info@rndcircle.io사업자등록번호 458-87-03380호스팅제공자 구글 클라우드 플랫폼(GCP)

© 2026 RnDcircle. All Rights Reserved.