张伟 副教授 博士 广东省 研究领域: 储能 研究方向: 高性能锂/钠离子电池 所在单位: 广东工业大学

基本信息

所在单位:
广东工业大学
机构细分:
材料与能源学院
单位类型:
高等院校
职务:
副教授
职称:
副教授
最高学历:
博士
教育经历:
2015年07月 在华中科技大学 材料学专业 获博士学位
2012年07月 在华中师范大学 分析化学专业 获硕士学位
工作经历:
2018年01月—至今 广东工业大学 材料与能源学院 青年百人计划
2015年09月—2017年12月 香港科技大学 博士后
专家介绍:
张伟,专注于新型锂离子电池、钠离子电池体系中高比能量、长寿命电极材料的设计、合成及能量存储机理方面的研究工作。在功能材料和储能器件设计、制备方面积累了扎实的理论基础和丰富的经验。已以第一作者和通讯作者身份在Adv. Mater., Adv. Energy. Mater., Adv. Funct. Mater., ACS Nano, Nano-Micro Letters., Nano Energy, Chem. Eng. J., Small,J. Mater. Chem. A, ACS Appl. Mater. Interfaces, ACS Sustainable Chem. Eng.等国际知名学术期刊上发表40多篇研究论文。目前在以黄少铭教授(国家杰出青年基金获得者)为团队负责人的广州市低维材料与储能器件重点实验室工作,该团队拥有XRD、SEM、Raman、AFM、UV-Vis、BET、高压静电纺丝机、角分辨光谱等精密的大型仪器设备,实验条件完备,为科研工作的开展提供非常充足的资源。目前,本小组所培养的研究生连续多年获得“国家奖学金”,并受到“拔尖人才计划”和“学业一等奖学金”的资助。

科研能力

研究领域:
储能
研究方向:
高性能锂/钠离子电池
论文著作:
[1] Xie Sike, Zhang Wei*, Huang Shaoming* et al. P-block Compounds Incorporated into SEI Enable Ultra-Stable Cell Cycling in Low-Temperature Sodium-Metal Batteries. Adv. Mater. 2025, 202518384. (一区,IF=27.4, TOP 1)
[2] Li Qinghua, Zhang Wei*, Huang Shaoming* et al. Tailoring Self-catalytic N-Co Bonds into Heterostructure Architectures: Deciphering Polytellurides Conversion Mechanism toward Ultralong-Lifespan Potassium Ion Storage, Adv. Mater. 2025, 2502894. (一区,IF=27.4, TOP 1)
[3] Lin Zeyu, Zhang Wei*, Huang Shaoming* et al. Synergistic Regulation of Polyselenide Dissolution and Na-Ion Diffusion of Se-Vacancy-Rich Bismuth Selenide Towards Ultrafast and Durable Sodium-Ion Batteries, Adv. Energy. Mater. 2024. 14, 2402110. (一区,IF=24.4, TOP 1)
[4] Huang zhijiao, Zhang Wei*, Huang Shaoming* et al. Regulating Ion Transfer Dynamics and Potassium Polyselenide Dissolution in Dual-Defect MoSe2-x@NC for Ultrafast and Stable Potassium-Ion Storage. Adv. Funct. Mater. 2024. 2424278. (一区,IF=18.5, TOP 1)
[5] Wang Junling, Zhang Wei*, Huang Shaoming* et al. Balancing Graphitic Nanodomains and Heteroatom Doping in Hard Carbons toward High Capacity and Durable Potassium-Ion Battery Anodes. Adv. Funct. Mater. 2024. 2409937. (一区,IF=18.5, TOP 1)
[6] Li Qinghua, Zhang Wei*, Huang Shaoming* et al. Efficient Polytelluride Anchoring for Ultralong-Life Potassium Storage: Combined Physical Barrier and Chemisorption in Nanogrid-in-Nanofiber, Nano-Micro Letters. 2024, 16,77 (一区,IF=26.6)
[7] Li Qinghua, Zhang Wei*, Huang Shaoming* et al. Manipulating the polytellurides of Metallic telluride for Ultra-stable Potassium-ion Storage: A Case Study of Carbon-Confined CoTe2 Nanofibers, Adv. Energy. Mater. 2023. 2300150.  (一区,IF=24.4, Top 1)
[8] Li Qinghua, Zhang Wei*, Huang Shaoming* et al. Nanodot-in-Nanofiber Structured Carbon-Confined Sb2Se3 Crystallites for Fast and Durable Sodium Storage, Adv. Funct. Mater. 2022, 2112776.  (一区,IF=18.5,Top 1)
[9] Ma Lianbo, Zhang Wei*, Jin Zhong* et al. Wide-Temperature Operation of Lithium–Sulfur Batteries Enabled by Multi-Branched Vanadium Nitride Electrocatalyst, ACS Nano 2023, 17, 11527–11536.  (一区,IF=15.8, 广工Top 2)
[10] Li Qinghua, Zhang Wei*, Huang Shaoming* et al. Metal–Organic Framework Derived Ultrafine Sb@Porous Carbon Octahedron via In Situ Substitution for High-Performance Sodium-Ion Batteries. ACS Nano 2021, 15.8, 15104–15113.  (一区,IF=17.1, Top 2)
[11] Liang Zhixin, Zhang Wei*, Huang Shaoming* et al. Uncovering and preventing polytellurides dissolution enables stable sodium-ion storage: A case study of SnTe, Chem. Eng. J. 2024. 498,154873. (一区,IF=13.3, TOP 2)
[12] Wang Gaoyu, Peng Jian, Zhang Wei*, Huang Shaoming* et al. Te-vacancy-rich CoTe2−x anodes for efficient potassium-ion storage, Chem. Eng. J. 2024, 483, 149436. (一区,IF=13.3, Top 2)
[13] Wang Guang, Zhang Wei*, Huang Shaoming* et al. Grid-like Structured Sb@DNC Anode by Self-Sacrificial Etching for Fast and Durable Sodium Storage, Small, 2024. 2409483. (二区,IF=13, TOP 2)
[14] Huang Jianlian, Li Weikuan, Zhang Wei*, Xiong Shiyun * et al. Synergistic vacancy and fluorine doping in metallic 1T-CoTe2 for high-performance sodium-tellurium battery cathodes. Applied Surface Science 2026, 727, 165961. (二区)
[15] Huang Jianlian, Xiong Shiyun, Lin Haiping, Zhang Wei*, Huang Shaoming* et al. Unveiling the Sodium Storage Mechanism of ReTe2: Insights from First-Principles Calculations. Energy Fuels 2024, 38, 7, 6489–6498. (二区)
[16] Huang Zhijiao, Zhang Wei*, Huang Shaoming* et al. Design of grid-like triple-carbon matrix confined ultrafine CoTe2 nanocrystals toward durable and fast potassium storage. J. Mater. Chem. A, 2024. (一区,IF=10.7, Top 2)
[17] Wang Gaoyu, Li Qinghua, Zhang Wei*, Huang Shaoming* et al. Unveiling the Synergy of Architecture and Anion Vacancy on Bi2Te3–x@NPCNFs for Fast Potassium Ion Storage. ACS Appl. Mater. Interfaces 2024. (一区,Top 2)
[18] Wu, Jiawei, Zhang Wei*, Huang Shaoming* et al., Universal architecture and defect engineering dual strategy for hierarchical antimony phosphate composite toward fast and durable sodium storage, J. Energy Chem. 2024, 90, 110-119 (一区,IF=14)
[19] Fan Wenbo, Huang Jianlian, Zhang Wei*, Huang Shaoming* et al. Synergistic effects of confined substitution and architecture engineering in CoTe2/Sb2Te3 heterostructures towards durable and fast sodium storage. Mat. Today Phys., 2024, 41, 101342 (二区,IF=10).
[20] Zhixin Liang, Li Qinghua, Zhang Wei*, Huang Shaoming* et al. Pomegranate-inspired porous SnSe/ZnSe@C anode:
A stress−buffer nanostructure for fast and ultrastable sodium-ion storage, J. Energy Chem. 2022, 75,369(一区, IF=14)
[21] Dandan Yu, Li Qinghua, Zhang Wei*, Huang Shaoming* et al. Amorphous Tellurium-Embedded Hierarchical Porous Carbon Nanofibers as High-Rate and Long-Life Electrodes for Potassium-Ion Batteries, Small. 2022, 106744. (一区,IF=13,Top 2)
[22] Zhao Weiming, Zhang Wei*, Huang Shaoming* et al. Dual-Type Carbon Confinement Strategy: Improving the Stability of CoTe2 Nanocrystals for Sodium-Ion Batteries with a Long Lifespan, ACS Appl. Mater. Interfaces 2022, 14, 5, 6801–6809.  (一区,IF=8.3, Top 2)
[23] Zhang Wei*, Wang Xuewen, Huang Shaoming* et al. Rational Design of Embedded CoTe2 Nanoparticles in Freestanding N-Doped Multichannel Carbon Fibers for Sodium-Ion Batteries with Ultralong Cycle Lifespan. ACS Appl. Mater. Interfaces 2021, 13, 34134−34144.  (一区,IF=8.3, Top 2)
[24] Wang Xuewen, Zhang Wei* Huang Shaoming* et al. Ultrafine ZnSe Encapsulated in Nitrogen-Doped Porous Carbon Nanofibers for Superior Na-Ion Batteries with a Long Lifespan and Low-Temperature Performance, ACS Sustainable Chem. Eng. 2021, 9, 35, 11705–11713. (一区, IF=8.4)
[25] Li Qinghua, Liang zhixin, Zhang Wei*, Huang Shaoming* et al. Constructing a Hierarchical Sb@C Nanoarchitectures as Free-Standing Anode for High-Performance Lithium-Ion Batteries. Materials Letters, 2021, 303, 130563.
[26] Yu Dandan, Zhang Wei, Huang Yunhui* et al. Tuning Anion Chemistry Enables High-Voltage and Stable Potassium-Based Tellurium-Graphite Batteries. Nano Energy, 2022, 92, 106744.  (一区, IF=16.8, Top 2)
[27] Yu Dandan, Wang Hua, Zhang Wei, Huang Yunhui* et al. Unraveling the role of ion-solvent chemistry in stabilizing small-molecule organic cathode for potassium-ion batteries. Energy Storage Mater., 2021, 43, 172–181. (一区, IF=18.9)
发明专利:
[1] 授权发明专利:一种钾离子电池负极材料及其制备方法和应用.专利申请号:ZL 2022 1 1447107.1;
[2] 授权发明专利: 一种双重碳包覆SnTe/CoTe2 复合材料及其制备方法和应用. 专利申请号:ZL 2022 1 1591826.0;
[3] 授权发明专利:一种本征Zn缺陷核壳结构ZnMoO3/C微球及其制备方法和应用.专利号:ZL202410015255.9;
[4] 授权发明专利: 一种碲化铋/碳纳米线复合材料及其制备方法和应用.专利申请号:ZL 202110071154.X。
[5] 授权发明专利: 一种一维磷酸锑纳米纤维材料及其制备方法和应用. 专利申请号:ZL 202011639829.8。
[6] 授权发明专利: 一种二碲化钴/碳纳米纤维材料及其制备方法和应用.专利申请号:ZL 202110069619.8。
[7] 授权发明专利: 一种Bi2S3/NiS2@C负极材料、钠离子电池及其制备方法.专利号:ZL 202110820340.9
[8] 授权发明专利: 三维网络状壳聚糖-碳酸钙复合纳米材料制备及细胞相容性. 专利号: ZL 201110217965.2。
[9] 授权发明专利: 一种碳包覆纳米碲复合材料制备方法和应用. 专利号:ZL 201410414819.2。
科研项目:
[1] 国家自然科学基金青年基金项目: 离子传导自增强型钠离子电池锑基负极复合材料的设计、合成和储钠机理研究,2022-2024年,结题,主持;
[2] 广东省自然科学基金面上项目: 硬碳负极协同优化机制:合金型功能改性剂设计及钠离子输运-界面演化调控,2026-2028年,在研,主持
[2] 广东省基础与应用基础研究-粤穗联合基金: 一种基于高比能量固态锂电池的厚电极结构设计及其离子传导机理探究,2020-2023年,结题,主持;
[3] 广东工业大学青年百人计划项目:2018-2023年,结题,主持;
[4] 国家自然科学基金委员会,国际合作与交流项目,51920105004,2019-2022,结题,参与;

项目合作

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