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杨雪蕊 讲师 硕导


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杨雪蕊,硕士生导师,厦门大学22届博士,江西省赣鄱俊才支持计划·青年科技人才托举项目入选者,江西赣锋锂业集团股份有限公司和南昌大学联合培养博士后。

教学上,主讲物理化学,化学电源,储能技术等理论与实验课程。主持教育部产学研协同育人项目1项,“本科优秀毕业论文”指导老师,指导3项大学生创新创业训练计划项目,参与3项南昌大学教改项目,获批1项南昌大学研究教学成果奖青年培育项目二等奖,担任本科生班级导师,研究生兼职辅导员等。

科研上,师从厦门大学化学系杨勇教授(国家杰青)和华南师范大学化学系李伟善教授,主要研究方向为锂(钠)等电池体系中电极/电解质结构和界面性质的理论与实验研究具有实验探究和Gaussian/VASP等理论计算双背景,可深入挖掘材料及电池的失效机理,重点关注和分析高压钴酸锂/三元高镍/磷酸锰铁锂正极材料和石墨/硅碳/锂金属负极材料的关键失效机制,并可针对不同电极材料的反应特点定向设计元素掺杂、表面包覆和宽温域/高电压/快充电解液(质)等单一或者多元协同改性研究。目前,已经合作发表SCI收录论文30余篇,其中以第一作者或通讯作者在Advanced Energy Materials (内前封面,高被引论文)Advanced Functional Materials (2篇),Journal of Materials Chemistry A等国际权威期刊上发表论文17篇,受理或者授权国家发明专利6项(其中授权3项),主持国家自然科学基金江西省自然科学基金南昌大学青年培育基金和教育部产学研协同育人项目等共7项;并参与过国家研发重点专项,国家基础研究发展计划等项目;现担任《Microstructures》杂志的青年编委以及《Inorganics》杂志的客座编辑。

其中,项目经历和代表性成果如下:

项目经历:

(1) 主持江西省自然科学基金 (青年项目)(2023.7-2025.6,在研)

(2) 主持南昌大学青年培育基金(2023.7-2026.6,在研)

(3) 主持教育部产学研协同育人项目(2023.8-2024.10, 已结题)

(4) 主持国家自然科学基金 (青年项目)(2024.1-2026.12,在研)

(5) 主持江西省自然科学基金 (面上项目)(2024.6-2026.5,在研)

(6) 主持中国博士后基金(面上项目)(2024.9-2026.8,在研)

(7) 主持江西省赣鄱俊才支持计划·青年科技人才托举项目(2025.1-2027.12,在研)


代表性研究成果:

(1) Xuerui Yang, Chuanwei Wang, Pengfei Yan, Yong Yang*, et al.; Pushing Lithium Cobalt Oxides to 4.7 V by Lattice‐Matched Interfacial Engineering, Advanced Energy Materials, 2022, 12(23): 2200197. (内前封面,高被引论文)

(2) Xuerui Yang, Shijun Tang, Zhengliang Gong*, Yong Yang*, et al.; From Contaminated to Highly Lithiated Interfaces: A Versatile Modification Strategy for Garnet Solid Electrolytes, Advanced Functional Materials, 2023, 33(3): 2209120.

(3) Xuerui Yang, Min Lin, Wanli Yang*, Yong Yang*, et al.; Enabling Stable High Voltage LiCoO2 Operation by Using Synergetic Interfacial Modification Strategy, Advanced Functional Materials, 2020, 30(43): 2004664.

(4) Xuerui Yang, Yaxin Huang, Zhengliang Gong*, Naigen Zhou*, and Yong Yang*, et al.; Understanding of working mechanism of lithium difluoro(oxalato) borate in Li||NCM85 battery with enhanced cyclic stability, Energy Materials 2023, 3(4), 300029-300047.

(5) Xuerui Yang, Zhongru Zhang*, Jianming Zheng*, Yong Yang*, et al.; Modification and regulation of electrode/electrolyte interface for high specific energy and long life lithium ion batteries, Chinese Science Bulletin, 2021, 66(10), 1170-1186.

(6) Xuerui Yang, Jiawei Chen, Guozhong Cao*, Weishan Li*, et al.; Mechanism of cycling degradation and strategy to stabilize a nickel-rich cathode, Journal of Materials Chemistry A, 2018, 6(33): 16149-16163.

(7) Xuerui Yang, Lidan Xing, Qiming Huang*, Weishan Li*, et al.; Stabilizing lithium manganese oxide/organic carbonate electrolyte interface with a simple boron-containing additive, Electrochimica Acta, 2017, 227: 24-32.

(8) Xuerui Yang, Wen Yang*, Naigen Zhou*, Yong Yang*, et al.; Research progress on wide-temperature-range liquid electrolytes for lithium-ion batteries, Journal of Power Sources, 2024, 624, 235563.

(9) Liekai Liu, Xuerui Yang*, Naigen Zhou*; Highly crosslinked resin prepares hard carbon anode for enhanced sodium storage performance and reduced cost, Chemical Engineering Journal, 2024, 498, 155876.

(10) Junke Liu#, Xuerui Yang#, Zuwei Yin*, Yao Zhou*, et al., Surface-to-bulk engineering with high-valence W6+ enabling stabilized single-crystal LiNi0.9Co0.05Mn0.05O2 cathode, Journal of Energy Chemistry, 2024, 98, 67-76.

(11) Yazhou Wang, Xuerui Yang*, Naigen Zhou*, et al.; Machine learning-assisted precision inverse design research of ternary cathode materials: A new paradigm for material design, Journal of Colloid And Interface Science, 2025, 680, 505-517.

(12) Jinxiong Huang, , Xuerui Yang*, Naigen Zhou*, et al.; Coil-likeA synergistic modification of Zr doping and a lattice-reconstructed La2Li0.5Ni0.5O2 caoting enables high-performance nickel-rich cathodes, Journal of Energy Storage, 2025, 106, 114926.

(13) Yao Wu, Shangquan Zhao*, Xuerui Yang*, Naigen Zhou*, et al.; Innovative doping strategies for Li2ZrCl6 solid electrolytes: A first-principles approach, Journal of Energy Storage, 2025, 107, 115017.

(14) Jing Lin, Xuerui Yanget al.; Coil-like Si-based composites prepared by encapsulating self-healing liquid metal-coated nanosilicon via flexible MXene for high-performance lithium-ion battery anodes, Journal of Power Sources, 2025, 629, 236067.


学术条件及支持:

所在团队及实验室已经获批锂电材料及应用江西省重点实验室和江西省工程研究中心,拥有原位XRD,TG-DSC等国内外先进科研设备和条件,欢迎对本研究领域感兴趣的化学、高分子、材料学等专业背景的学生加入!


联系方式:

办公室:材料楼A309

邮箱:yangxuerui@ncu.edu.cn