
基本情况
出生年月:1995年02月
职称:副教授
最高学位:博士
办公地点:博达校区智能技术研发中心大楼A203。
主要研究方向:1.锌/锂/钠离子电池;2.聚合物电解质;3.理论计算与仿真模拟
讲授课程:无
导师类别:学术型硕导;专业型硕导
招生信息:每年招收1-2名硕士研究生
联系方式:tongyan@xju.edu.cn
教育及工作经历
2025.12 - 至今 新疆大学,材料科学与工程学院,副教授
2025.06 - 2025.12 新疆大学,材料科学与工程学院,教师
2021.09- 2025.06 华南理工大学,化学与化工学院,博士学位
2018.09- 2021.06 湘潭大学,化学学院,硕士学位
2014.09- 2018.07 洛阳理工学院,材料科学与工程学院,学士学位
科研项目
1.国家自然科学基金联合项目,2026.01-2029.12,主持;
2.新疆大学博士人才启动基金,2026.01-2027.12,主持;
3.国家自然科学基金面上项目,2021.01-2024.12,参与;
学术成果
聚焦于低成本电解质的设计与开发、电极表/界面稳定性调控及机理解析、电极材料设计与电化学性能调控。截至目前已发表SCI论文27篇,其中以第一作者/通讯作者身份,在Angewandte Chemie、ACS Nano、Advanced Functional Materials、Energy Storage Materials(2篇)、Nano Research、Journal of Materials Chemistry A(3篇)等国际知名期刊发表论文11篇,其中包含2篇ESI高被引论文,他引600余次,H指数15。
学术论文
1.Tong Yan, Boyong Wu, Mengli Tao, Sucheng Liu, Jinhui Liang, Minjian Li, Cong Xiang, Zhiming Cui, Li Du, Zhenxing Liang*, Huiyu Song*. Sieving-type electric double layer with hydrogen bond interlocking to stable zinc metal anode.Angewandte Chemie International Edition, 2024, 63,e202411470.(中科院一区,影响因子16.9)
2.Cong Xiang,Tong Yan,*Boyong Wu, Sucheng Liu, Li Du, Zhiming Cui, Huiyu Song,* and Zhenxing Liang*. Hydrogen-Bond-Mediated Proton Blocking Strategy for Achieving Ultrastable Zinc Anodes.Advanced Functional Materials,2026,36,e16431.(中科院一区,影响因子19.0)
3.Minjian Li, Lianzhan Huang, Boyong Wu, Jinhui Liang, Jiahao Xiang,Tong Yan*, Mengli Tao, Li Du, Zhiming Cui, Huiyu Song*. Zhenxing Liang*. Fast charging lithium metal battery based on Lewis acid/base dual-site solid electrolyte interphase.Energy StorageMaterials, 2025, 75,104069.(中科院一区,影响因子20.2)
4.Tong Yan, Boyong Wu, Sucheng Liu, Cong Xiang, Mengli Tao, Lei Niu, Jinhui Liang, Zhiming Cui, Li Du, Huiyu Song* and Zhenxing Liang*. A Dendrite-free Zn Anode with Oriented (101) Crystal Plane under Fast Kinetics by Regulating Interfacial Electric Fields.Nano Research, 2025, 18, 94907601.(中科院一区,影响因子9.0)
5.Tong Yan, Sucheng Liu, Jinye Li, Mengli Tao, Jinhui Liang, Li Du, Zhiming Cui, Huiyu Song*. Constructing a topologically adaptable solid electrolyte interphase for a highly reversible zinc anode.ACS Nano, 2024, 18,3752-3762.(中科院一区,影响因子16.0, ESI高被引论文)
6.Tong Yan, Mengli Tao, Jinhui Liang, Guangli Zheng, Boyong Wu, Li Du, Zhiming Cui, Huiyu Song*. Refining the inner Helmholtz plane adsorption for achieving a stable solid-electrolyte interphase in reversible aqueous Zn-ion pouch cells.Energy Storage Materials, 2024, 65,103190.(中科院一区,影响因子20.2, ESI高被引论文)
7.Tong Yan, Rui Ding*, Yongfa Huang, Danfeng Ying, Caini Tan, Yuxi Huang, Feng Yang, Xiujuan Sun, Ping Gao, Enhui Liu. A novel sodium-ion supercabattery based on vacancy defective Ni-Co-Mn ternary perovskite fluorides electrode materials.Journal of Materials Chemistry A, 2021, 9, 14276-14284.(中科院二区,影响因子9.5)
8.Tong Yan, Rui Ding*, Danfeng Ying, Yongfa Huang, Yuxi Huang, Caini Tan, Xiujuan Sun, Ping Gao and Enhui Liu, A high tap density perovskite NaTaO3nanocrystal anode driven by pseudocapacitive conversion/intercalation hybrid mechanisms for advanced Li-ion/dual-ion storage,Journal of Materials Chemistry A, 2020, 8, 4747-4752.(中科院二区,影响因子9.5)
9.Tong Yan, Rui Ding*, Danfeng Ying, Yongfa Huang, Yuxi Huang, Caini Tan, Xiujuan Sun, Ping Gao and Enhui Liu, An intercalation pseudocapacitance-driven perovskite NaNbO3anode with superior kinetics and stability for advanced lithium-based dual-ion batteries,Journal of Materials Chemistry A, 2019, 7, 22884-22888.(中科院二区,影响因子9.5)
10.Tong Yan, Yongfa Huang, Rui Ding,* Wei Shi, Danfeng Ying, Ziyang Jia, Caini Tan, Yuxi Huang, Xiujuan Sun, Enhui Liu. Pseudocapacitive trimetallic NiCoMn-111 perovskite fluorides for advanced Li-ion supercabatteries.Nanoscale Advances, 2021, 3, 5703-5710.(中科院三区,影响因子4.6)
11.Jiajun Huang,1Tong Yan,1Mengli Tao, Weifeng Zhang, Wei Li, Guangli Zheng, Li Du, Zhiming Cui, Xiujun Wang, Shijun Liao, Huiyu Song.* Localized high-concentration carbonate electrolyte creating functional in situ interfaces: Side reaction inhibition for lithium sulfur batteries.Journal of Power Sources, 2023, 563, 232783.(中科院二区,影响因子7.9)
12.Guangli Zheng,Tong Yan, Yifeng Hong, Xiaona Zhang, Jianying Wu, Zhenxing Liang, Zhiming Cui, Li Du, Huiyu Song*.Nature Communications, 2023, 14, 2268.(中科院一区,影响因子15.7)
13.Boyong Wu,Tong Yan, Sucheng Liu, Yufeng Su, Cong Xiang, Minjian Li, Zhiming Cui, Li Du, Zhenxing Liang*, Huiyu Song*.Advanced Functional Materials, 2025, 35, 2421244.(中科院一区,影响因子19.0)
14.Yongfa Huang, Rui Ding*, Danfeng Ying, Yuxi Huang,Tong Yan, Caini Tan, Xiujuan Sun, Enhui Liu. A novel Li-ion supercapattery by K-ion vacant ternary perovskite fluoride anode with pseudocapacitive conversion/insertion dual mechanisms.Rare Metals, 2022, 41, 2491-2504.(中科院一区,影响因子11.0)
15.Yongfa Huang, Rui Ding*, Danfeng Ying,Tong Yan, Yuxi Huang, Caini Tan, Xiujuan Sun, Enhui Liu. Perovskite fluoride KMF3 (M=Ni or Co)@reduced graphene oxide anode for Na-based dual-ion batteries.Journal of Alloys and Compounds, 2022, 891, 161905.(中科院二区,影响因子6.3)
16.Yongfa Huang, Rui Ding*, Danfeng Ying, Yuxi Huang, Caini Tan,Tong Yan, Xiujuan Sun, Enhui Liu. A F-deficient and high-Mn ternary perovskite fluoride anode with a dominant conversion mechanism for advanced Li-ion batteries.Chemical Communications, 2021, 57, 7705-7708.(中科院二区,影响因子4.2)
17.Caini Tan, Rui Ding*, Yongfa Huang,Tong Yan, Yuxi Huang, Feng Yang, Xiujuan Sun, Ping Gao, Enhui Liu. Conversion/insertion pseudocapacitance-driven vacancy defective perovskite fluorides K0.82Co0.43Mn0.57F2.66@reduced graphene oxide anode for powerful Na-based dual-ion batteries and capacitors.Electrochimica Acta, 2021, 389, 138713.(中科院二区,影响因子5.6)
18.Caini Tan, Rui Ding, Yuxi Huang,Tong Yan, Yongfa Huang, Feng Yang, Xiujuan Sun, Ping Gao, Enhui Liu. A vacancy-rich perovskite fluoride K0.79Ni0.25Co0.36Mn0.39F2.83@rGO anode for advanced Na-based dual-ion batteries.Chemical Communications, 2021, 57, 5830-5833.(中科院二区,影响因子4.2)
社会兼职
Inorganics期刊客座编辑;Advanced Functional Materials,Journal of Materials Chemistry A,Chemical Communications等期刊审稿人。
奖励情况
荣誉称号
1.2024年博士研究生国家奖学金
2.2024年博士研究生校长奖学金
3.2021年博士研究生校长奖学金
4.2021年硕士研究生校长奖学金
5.2021年湖南省优秀毕业生
6.2021年湖南省普通高校百佳大学生党员
7.2020年硕士研究生国家奖学金
8.2019年研究生新宙邦奖学金
9.2020年三好研究生标兵