Education 材料科学与能源工程学院

杨文Wen Yang

副教授,

材料科学与能源工程学院

邮箱:yangwen@suat-sz.edu.cn

君子不器

个人简介

长期专注于长期从事锂离子电池的研究,主要围绕固态锂电池界面构筑和性能提升关键问题开展了系统创新性研究,获得了一系列突出的创新性成果。迄今发表论文99余篇,顶级期刊发表文章46篇,影响因子≥10 28篇,引用5632次;近5年(2020-迄今),以通讯作者在Advanced Materials、Advance Energy Materials, Advanced Functional Materials, Journal of Energy Chemistry等SCI国际期刊发表论文43篇,H因子40。申请授权中国专利5项。兼任Nano Research、Rare Metal等期刊青年编委。获批国家自然科学基金面上2项;现主持国自然面上项目,海南省重点研发计划子项目。

学习工作经历

学习经历:

2003.07-2009.01中国科学院长春应用化学研究所,分析化学,博士

1999.09-2003.7陕西师范大学,应用化学,学士

工作经历:

2025.03至今 深圳理工大学,副教授,博士生导师

2023.09-2025.02国光电器-广东国光电子有限公司CTO

2021.09-2023.08北京理工大学化学与化工学院,长聘副教授(LevelA),PI,博士生导师

2016.03-2021.08北京理工大学化学与化工学院,北京理工大学首批预聘-长聘制 预聘副教授,PI,博士生导师

2011.06-2016.02北京理工大学化学学院,讲师、副教授(2012)、博士生导师 (2014)

2009.03-2010.06德国马普学会胶体界面系,胶体系,博士后

研究领域

固态锂电池关键材料及其前驱体的设计与制备、固态锂电池电极界面研究、实用化固态锂电池构建研究,以及其规模化应用探索:

1)新型固态电解质及前驱体(包括,硫化物固态电解质和硫化锂、半固态电解质、及其聚合物固态电解质)的设计与制备、固态离子学、离子输运性能调控及机理研究

2)新型固态锂电池器件(包括硫化物全固态电池,半固态锂电池等)构建、表界面调控及其能量储存机制研究

3)固态电池(硫化物全固态锂电池和半固态电池)的规模化开发

4)特种电源用固态锂离子技术的规模化开发

代表文章

1.X.Wang, L Yang, N.Ahmad, L.Ran, R.Shao,W.Yang*, Colloid Electrolyte with Changed Li+ Solvation Structure for High-Power, Low-Temperature Lithium-Ion Batteries,Advanced Materials, 2023, 35, 2209140. (*Corresponding author)


2.W.He, N.Ahmad, S.Sun, X.Zhang, L.Ran, R.Shao*, X.Wang,W.Yang*,Microscopic Segregation Dominated Nano-Interlayer Boosts 4.5 V Cyclability and Rate Performance for Sulfide-Based All-Solid-State Lithium Batteries,Advanced Energy Materials,2023, 13, 2203703.(*Corresponding author)


3.X.Cao, N.Ahmad, H.Pei, Z.Hua, R.Shao*, L.Zhang*,W.Yang*,Zirconization of LiCoO2 for enhanced stability and oxygen deactivation in all-solid-state lithium battery cathodes,Journal of Energy Chemistry,2025, DOI: https://doi.org/10.1016/j.jechem.2025.02.031.(*Corresponding author)

4.P.Zhai, N.Ahmad, S.Qu, L.Feng *,W.Yang*, A Lithiophilic–Lithiophobic Gradient Solid Electrolyte Interface Toward a Highly Stable Solid‐State Polymer Lithium Metal Batteries,Advanced Functional Materials,2024, 2316561.


5.P.Yu, S.Sun, C.Sun, C.Zeng, Z.Hua, N.Ahmad, R.Shao*,W.Yang*, Active Regulation Volume Change of Micrometer-Size Li2S Cathode with High Materials Utilization for All-Solid-State Li/S Batteries through an Interfacial Redox Mediator,Advanced Functional Materials,2024, 34, 2306939.


6.N.Ahmad, S.Sun*, P.Yu,W.Yang*, Design Unique Air-Stable and Li-Metal Compatible Sulfide Electrolyte via Exploration of Anion Functional Units for All-Solid-State Lithium-Metal Batteries,Advanced Function Materials, 2022, 32, 2201528.


7.Y.Xiao, L.Yang, C.Zeng, Z.Hua, S.Qu, N.Ahmad*, R.Shao,*, W.Yang,*Suppression High Voltage Chemo-mechanical Degradation in Single Crystal Nickel-Rich Cathodes for High Performance for All-Solid-State Lithium BatteriesJournal of Energy Chemistry, 2025, 102,377-385.

8.P.Zhai, S.Qu, N.Ahmad, Z.Hua, R.Shao*,W.Yang*, Constructing Nano-Interlayer Inhibiting Interfacial Degradation toward High-Voltage PEO-Based All-Solid-State Lithium Batteries,Small,2024, 2310547.


9.R.Huang, R.Li, S.Li,W.Yang*, Y.Bai, Z.Wang*, K.Sun, In-situ constructing 3D nanocarbon conduction conformal network on silicon anodes for high-performance sulfide-based all-solid-state batteriesChemical Engineering Journal,2025, 503, 158154.

10.P.Yu , N.Ahmad , J.Yang , C.Zeng , X.Liang , W.Huang , M.Ni , P.Mao* ,W.Yang*,Dual-doping for enhancing chemical stability of functional anionic units in sulfide for high-performance all-solid-state lithium batteries,Journal of Energy Chemistry ,2023, 86,382-390.

11.C.Fan, N.Ahmad, T.Song, C.Zeng*, X.Liang, Q.Dong,W.Yang*, Electrolyte design for Li-conductive solid-electrolyte interphase enabling benchmark performance for all-solid-state lithium-metal batteries,Nano Research, 2024, 17, 9640–9650.

12.N.Ahmad*, C.Fan, M.Faheem, X.Liang, Y.Xiao, X.Cao,C.Zeng*, Q Dong,WYang*, Key challenges and advancements toward fast-charging all-solid-state lithium batteries,Green Chemistry, 2024,26, 9529-9553.

13.Y.Zhan, P.Zhai, T.Song,W.Yang*, Y.Li*, Enhanced performance in lithium metal batteries: A dual-layer solid electrolyte interphase strategy via perfluoropolyether derivative additive,Chemical Engineering Journal,2024, 491, 1 151974.


14.L.Yang, Y.Huang, M.K.Tufail, X.Wang*,W.Yang*, An Unprecedented Fireproof, Anion‐Immobilized Composite Electrolyte Obtained via Solidifying Carbonate Electrolyte for Safe and High‐Power Solid‐State Lithium‐Ion Batteries,Small,2022, 18, 2202060.


15.M.K.Tufail, N.Ahmad, L.Zhou, M.Faheem, L.Yang, R.Chen*,W.Yang*,Insight on Air-Induced Degradation Mechanism of Li7P3S11 to Design a Chemical-Stable Solid Electrolyte with High Li2S Utilization in All-Solid-State Li/S Batteries,Chemical Engineering Journal,2021, 425, 130535.

联系方式

电子邮件:yangwen@suat-sz.edu.cn