辛燕

13756b175b7c4c7286aaed219196f979.jpg

姓名:辛燕

职称:副教授、硕士生导师

院系:365英国上市官方网站

职务:材料科学与工程党支部书记

储能电池材料与应用技术研究所副所长

研究方向:

储能二次电池材料与器件;新型电化学储能材料

联系方式:

电话:010-61772352

邮箱:xinyan@ncepu.edu.cn

地址:主楼F808


个人简介及主要荣誉称号:

辛燕,女,副教授,硕导,2008年6月在北京航空航天大学材料学专业获工学博士学位。国家储能技术产教融合创新平台“电化学储能材料与器件”方向骨干成员,主要研究单价锂、钠离子电池,高安全性多价镁、锌离子电池等高比能新型电化学储能电池关键材料及其表界面改性。主持完成国家自然科学基金项目1项和参与4项,主持中央高校基本科研业务基金项目5项,主持横向项目1项,参与10项。在Nature Reviews Chemistry, Chemical Reviews, Advanced Materials, Advanced Energy Materials, Advanced Functional Materials (2篇), ACS Nano, Nano-micro Letters, Energy Storage Materials, Journal of Materials Chemistry A, Acta Materialia, Small, Nanoscale, Scripta Materialia,物理化学学报等国内外知名学术期刊上发表SCI收录论文39篇,EI收录论文3篇,授权专利14项。


教育经历

1998-2005北京航空航天大学 材料科学与工程 获学士和硕士

2005-2008北京航空航天大学 材料学 获博士学位

科研与学术工作经历

2008-2015华北电力大学 讲师,硕导

2015-今   华北电力大学 副教授,硕导

2016-2017美国中佛罗里达大学访问学者


教学与人才培养情况:

主讲本科生专业核心课程:材料力学性能、金属材料学、新型电化学能源材料、材料科学与工程导论、光学显微分析实习

主讲研究生课程:专业英语(材料)

指导在读研究生数名,欢迎材料相关专业学生推免或报考


主要科研项目和平台:

主持国家自然科学基金项目1项和参与4项,主持中央高校基本科研业务基金项目5项,主持水系锌离子电池概念验证项目一项,主持横向项目1项,参与11项。近5年主持或参加的主要科研项目:

(1) 国家储能技术产教融合创新平台,电化学储能材料与器件(骨干成员)

(2)水系锌离子电池关键正负极材料产品小试,,华北电力大学概念验证项目,2024(主持)

(3)本质安全储能监测技术, 国网“双创”项目2024-2026(参与

(4)先进电化学储能技术研究与应用,横向项目,2025-2030(参与)

(5)高性能锂(钠)离子储能电池关键材料与技术,华北电力大学“双一流”建设项目学科交叉创新专项2021-2023(参与)

(6)温度场和电场作用下铁基非晶中Cu团簇演变规律及对非晶纳米晶化和软磁性能的影响,国家自然科学基金面上项目2020-2023(参与)


主要获奖情况:

2009和2019年校级优秀班主任

2018-2019学年华北电力大学教学优秀奖

2019年华北电力大学青年教师教学基本功比赛三等奖

2024和2025年校级优秀硕士论文指导教师


代表性论著:

1. Bijiao He, Fang Zhang, Yan Xin*(通讯作者), Chao Xu, Xu Hu, Xin Wu, Yang Yang*, Huajun Tian*, Halogen chemistry of solid electrolytes in all-solid-state batteries, Nature Reviews Chemistry, 2023, 7, 826–842.

2. Fang Zhang, Bijiao He, Yan Xin, Tiancheng Zhu, Yuning Zhang*, Shuwei Wang, Weiyi Li, Yang Yang*, Huajun Tian*, Emerging chemistry for wide-temperature sodium-ion batteries(选为封面文章), Chemical Reviews, 2024, 124, 4778−4821.

3. Yang Liu, Yan Xin, Bijiao He, Fang Zhang, Chen Wang, Huajun Tian*, High Entropy Fine-Tuning Achieves Fast Li+ Kinetics in High-Performance Co-Free High-Ni Layered Cathodes, Advanced Materials, 2025, 37(10): 2417353.

4. Yang Liu†, Zhenzhong Yang†, Yan Xin(共同一作), Wenbo Liu, Chen Wang, Jianwei Zhang, Yu Shen, Huajun Tian,* and Yang Yang*, Rare Earth Lattice Optimization Towards High-Performance Ni-Rich Layered Cathodes, Advanced Energy Materials, 2025, 2501576.

5. Yan Xin, Jiayao Qi, Huanhuan Xie, Yunnian Ge, Zerui Wang, Fang Zhang, Bijiao He, Shuwei Wang, Huajun Tian*, 3D Ternary Alloy Artificial Interphase Toward Ultra-Stable and Dendrite-Free Aqueous Zinc Batteries, Advanced Functional Materials, 2024, 2403222.

6. Chen Zhao, Yan Xin, Fang Zhang, Bijiao He, Yang Yang, Huajun Tian. Electrodeposition Chemistry Toward High-Safety and High-Energy-Density Rechargeable Multivalent Ion Batteries, Advanced Functional Materials, 2025, 35, 45, 2501894.

7. Fang Zhang, Bijiao He, Yan Xin, Wenbo Liu, Shen Cai, Huajun Tian*, Yang Yang*, Tailoring Local Chemistry of O3-Type Ni/Fe/Mn Based Layered Oxide Cathode for High-Performance Sodium-Ion Batteries, ACS Nano, 2025, 19, 25, 23011–23027.

8. Bijiao He, Yunnian Ge, Fang Zhang, Huajun Tian*, Yan Xin, Yong Lei*, Yang Yang*, Understanding electrolytes and interface chemistry for sustainable nonaqueous metal-CO2 batteries, Nano-micro Letters, 2025, 17, 299.

9.  Xiao Chai, Huanhuan Xie, Ting-Ting Zhang, Yan Xin*(通讯作者), Fang Zhang, Bijiao He, Haokai Xie, Le Yu*, Huajun Tian*, Ternary Mg alloy-based artificial interphase enables high-performance rechargeable magnesium batteries, Energy Storage Materials, 2024, 70, 103460.

10. Yang Liu, Yan Xin, Bijiao He, Fang Zhang, Wenbo Liu, Huajun Tian*, High-rate Rare-earth based High-entropy Co-free High-Ni Cathodes for High-Performance Lithium-ion Batteries, Journal of Materials Chemistry A, 2025, 13(18), 12957-12967.

11. Yan Xin, Yunnian Ge, Huanhuan Xie, Shen Cai, Chen Zhao, Huai Zhang* and Huajun Tian*, Quaternary Alloy Interfaces for Stable Zinc Anodes for High-performance Aqueous Zinc-Ion Batteries with Long-term Cycling Stability, Small, 2025, 21(25), 2502569.

12. Weiyi Li, Bijiao He, Fang Zhang, Yan Xin, Shen Cai, Huajun Tian*, High-Performance Alluaudite-Type Na2.54(Fe0.97Mg0.03)1.73(SO4)3 Microspheres Cathode for Sodium-Ion Batteries with an Ultrahigh Rate Capability and 9000 Cycle Life, Small, 2025, 21(19), 2500271.

 

13. Yan Xin, Yunnian Ge, Ming Lei, Shen Cai, Chen Zhao, Huai Zhang* and Huajun Tian*, Zn-Sn Interface Layer Design Strategy Towards High-stability Zn Powder Anode, Nanoscale, 2025, 17, 15289-15300.

14. Weiyi Li, Min Zhang, Shen Cai, Yan Xin, Huajun Tian*, A Novel Spherical Mg/Sn Co-doped Alluaudite-type Na2+2xFe2-x(SO4)3 Cathode Material for Durable Low-Temperature Sodium-ion Batteries, Nanoscale, 2025, 17(35), 20465-20475.

15. Xiao Wang, Chen Zhao, Peng Luo, Yan Xin*(通讯作者), Yunnian Ge and Huajun Tian*, An artificial aluminum–tin alloy layer on aluminum metal anodes for ultra-stable rechargeable aluminum-ion batteries, Nanoscale, 2024, 16(27) : 13171-13182.

16. Xiao Chai†, Yan Xin(共同一作), Bijiao He, Fang Zhang, Haokai Xie and Huajun Tian, High-efficiency electrodeposition of magnesium alloy-based anodes for ultra-stable rechargeable magnesium-ion batteries, Nanoscale, 2024, ,16, 9123-9135.

17. Yan Xin, Yangyang Li, Huai Zhang*, Yuxuan Zhang, Xinyan Zhu, Shuwei Wang, Zhangxing He*, Huajun Tian*, Micron-sized silicon-carbon composites via tuning mechanical strength for high-performance lithium-ion batteries, Journal of Power Sources, 2026, 665, 239105.

18. Yan Xin*, Yangyang Li, Yuxuan Zhang, Fang Zhang, Bijiao He, and Huajun Tian*, Eco-Efficient, Non-acidic Etched and Cost-effective Micron-Sized Porous Si-C Anodes for High-Performance Li-ion Batteries, Energy & Fuels, 2025, 39, 15, 7564-7575.

19. Shixue Zhong, Yan Xin*(通讯作者), Ming Lei, Shen Cai, Chen Zhao, Huai Zhang*, Huajun Tian*, Scalable Production of MnO2/Carbon Composites via a Simple One-step Precipitation Method for Aqueous Zn-ion Battery, Energy & Fuels, 2025, 39, 25, 12254–12263.

20. Yan Xin, Jiayao Qi, Yunnian Ge, Bijiao He, Fang Zhang, Shuwei Wang, and Huajun Tian*, Effective Orientation Control of the Zinc Anode for High-Performance Aqueous Zinc-Ion Batteries: A Key Approach To Address Dendrite Growth and Side Reactions, Energy & Fuels, 2024, 2024, 38, 10275−10286.

21. Shixue Zhong, Yan Xin*(通讯作者), Li’e Mo , Bijiao He, Fang Zhang ,Chen Zhao, Linhua Hu* and Huajun Tian*, Intercalation and Interface Engineering of Layered MnO2 Cathodes toward High-Performance Aqueous Zinc-Ion Batteries, The Journal of Physical Chemistry C, 2025, 129(14), 6684–6696.

22. Yan Xin, Zezhong Li, Yunnian Ge, Fang Zhang, Bijiao He, Chen Wang, Shuwei Wang, and Huajun Tian*, High-rate Performance Organic Cathodes based on Carbon Nanotube-Modified Anthraquinone-based Polyimides for All-organic Lithium/Sodium-Ion Batteries, The Journal of Physical Chemistry C, 2024, 128, 27, 11120–11130.

23. Tiantian Li, Xiangran Chang, Yan Xin*(通讯作者), Yang Liu, Huajun Tian*.Synergistic Strategy Using Doping and Polymeric Coating Enables High-Performance High-Nickel Layered Cathodes for Lithium-Ion Batteries. The Journal of Physical Chemistry C, 2023, 127, 18, 8448–8461.

24. 辛燕*(通讯作者); 葛运年; 李泽中; 张桥保*; 田华军*.储能电池有机电极材料改性策略研究进展. 物理化学学报,2024, 40 (2), 2303060

25. Yan Li*, Yan Xin, Liang Chai, Yunqing Ma, Huibin Xu. Microstructures and shape memory characteristics of dual-phase Co–Ni–Ga high-temperature shape memory alloys. Acta Materialia. 2010. 58 (10): 3655–3663.


实验室:

国家储能技术产教融合创新平台

电站能量传递转化与系统教育部重点实验室

高性能二次电池实验室

储能电池材料与应用技术研究所

/jgsz/wljy1/47c198d86afc4bae87898eeef718df9f.htm