
一、个人概况
张译丹,女,蒙古族,中共党员,1996年11月出生,内蒙古赤峰人,博士,硕士研究生导师,“英才兴蒙”高层次人才。主讲“大学物理B”、“新型电池材料与器件”、“电化学原理”等课程。主要从事高比能锂电池方向的研究,主要包括电极结构设计、电解液设计、预锂化工艺、电池热安全研究等,以第一作者或通讯作者发表SCI论文9篇,已授权发明专利1项。
地址:太阳集团tyc3345盛乐校区理工楼
邮编:011517
邮箱:zhangyd@imnu.edu.cn
二、教育简历
2013.09-2020.06 安徽大学,本硕;
2021.09-2025.06 华中科技大学,博士;
2025.07-至今 太阳集团tyc3345。
三、科研支持与项目
1. 2025 年度内蒙古自治区“两个屏障”“两个基地”“一个桥头堡”关键领域科技创新研究专项子课题,2026.1.1-2028.12.31,30万,主持。
2. 内蒙古自治区自然科学基金项目,2026QC0643,2026.7.1-2029.6.30,10万,主持。
3. 太阳集团tyc3345自主科研项目,KJQDJ2026024,2026.1.1-2028.12.31,100万,主持。
四、代表性论文
1. Yidan Zhang, Zhen Li*, Yunhui Huang*, et al. Innovative anode design to enhance both volumetric and gravimetric energy densities of LiCoO2||graphite pouch cells. Advanced Energy Materials (2024) 2403804.
2. Yidan Zhang, Zhen Li*, Yunhui Huang*. Design double layered anode for stably introducing lithium source to achieve sulfur-carbon full Batteries. Advanced Functional Materials (2024) 2417124.
3. Yidan Zhang, Zhen Li*, Yunhui Huang*, et al. Design of double layer cathode electrode for improving the safety and stability of lithium-ion batteries. Chemical Engineering Journal 495 (2024) 15334.
4. Shixiang Sun, Wei Li*, Yidan Zhang* et al. Synthesis of lithium iron phosphate materials via an all-in-one integrated liquid phase method. Molecules 31(2026) 1419.
5. Yidan Zhang#, Ankang Zhu#, Youmin Guo* et al. Electrochemical performance and effect of moisture on Ba0.5Sr0.5Sc0.175Nb0.025Co0.8O3-δ oxide as a promising electrode for proton conducting solid oxide fuel cells. Applied Energy 238 (2019) 344-350.
6. Yidan Zhang, Youmin Guo* et al.The synergistic effect accelerates the oxygen reduction/evolution reaction in a Zn-air battery. Frontiers in Chemistry 7 (2019) 524.
7. Yidan Zhang, Youmin Guo* et al.Enhanced catalytic activity of LaMnO3 by A‑site substitution as air electrode of Zn-air batteries with attractive durability. Energy & Fuels 34 (2020) 10170-10177.
8. Qilong Zheng#, Yidan Zhang#, Youmin Guo et al. Nonnoble metal oxides for high-performance Zn-air batteries: Design strategies and future challenges. Asia-Pacific Journal of Chemical Engineering 17 (2022) e2776; IF=1.4