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曾垂涛

2024-08-19  

       

姓名:曾垂涛

性别:

职称:讲师

学历学位:博士研究生

硕/博士生导师:

研究方向:新能源材料与器件

电话:

E-mail:20240089@huat.edu.cn

    

个人简介

曾垂涛,工学博士,主要从事新能源材料与器件的设计和应用基础研究具有电解水制氢催化、燃料电池、锂离子电池、电致变色等前沿热点领域的专业背景,在纳米材料合成与表征、性能评估第一性原理计算等方面积累了丰富的研究经验以第一作者Chemical Engineering Journal, Fuel, International Journal of Hydrogen Energy 国际知名期刊发表SCI论文5,国家发明利2项欢迎材料、化学学科及新能源领域感兴趣学生加入进行科研、开展毕业论文工作报考研究生

教育经历:

2021.09-2024.07  北京工业大学,材料科学与工程, 博士

2018.09-2021.07  北京工业大学 ,材料工程,硕士

2014.09-2018.07  江西理工大学,无机非金属材料工程 学士

工作经历:

2024.07-至今    湖北汽车工业学院, 材料科学与工程学院, 讲师



  

教学情况

主讲或参与讲授的本科生及研究生课程情况

《材料化学》、《纳米材料及其制备技术》



   

研究课题

主持或参加科研项目情况

1)主持湖北汽车工业学院博士科研启动基金项目《面向新能源汽车电池的过渡金属基复合催化材料设计及应用研究》20万

2)参与国家自然科学基金青年项目《基于相变电子增强的PEM水电解制氢催化材料构筑与协同催化机制研究》,5230011825,30万

3)参与中国博士后科学基金面上项目《面向中性介质电解水产氢的单原子纳米复合结构催化剂材料构筑与长效催化机制研究》,2022M7102738万

4)参与国家电网公司总部科技项目梯次利用三元电池寿命评估及安全性研究201919215A40万



 

获奖及专利

国家发明专利:

[1]金玉红;曾垂涛;郝昌顺;周开岭;张倩倩;刘晶冰;汪浩;一种可视化电催化材料及其制备方法和应用(CN114892211B

[2]周开岭;曾垂涛;金玉红;张倩倩;刘晶冰;汪浩;一种质子化辅助界面电荷自调控电催化材料的制备方法和应用(CN117210823A


    

代表性论文

[1]ChuiTao Zeng, Jianhua Zhang, Lingzhi Xia, Kai-Ling Zhou*, Yuhong Jin, Yongzheng Zhang*, Changbao Han, Woon-Ming Lau, Hao Wang. Self-tuned interfacial charges induced by protonated transition metal heterostructure for efficiently acidic hydrogen evolution reaction[J]. Chemical Engineering Journal, 2023, 476: 146387. (中科院区TOP)

[2]ChuiTao Zeng, Jianhua Zhang, Yuhong Jin*, Dayong Ren, Leyuan Li, Kailing Zhou*, Qianqian Zhang, Jingbing Liu, Changbao Han, Hao Wang. Accelerated mass/electron transfer by self-supporting Ni2P@Cu3P heterostructure array to boost alkaline hydrogen evolution at high current density[J]. Fuel, 2023, 350: 128828. (中科院区TOP)

[3]ChuiTao Zeng, KaiLing Zhou*, Yuhong Jin*, Qianqian Zhang, ChangBao Han, Jingbing Liu, RuZhi Wang, Hao Wang*. A platinum modulated tungsten oxide on Ag nanowires network as an indicator for in-situ visualized evaluation of the hydrogen evolution performance[J]. International Journal of Hydrogen Energy, 2023, 48(9): 3364-3372. (中科院区)

[4]ChuiTao Zeng, Lingyun Dai, YuHong Jin*, JingBing LiuQianQian ZhangHao Wang*. Design strategies toward transition metal selenide based catalysts for electrochemical water splitting [J]. Sustainable Energy & Fuels, 2021,5: 1347-1365.

[5]ChuiTao Zeng, KaiLing Zhou, Yuhong Jin, Qianqian Zhang, Jingbing Liu, Hao Wang*. A binder-and carbon-free hydrogen evolution electro-catalyst in alkaline media based on nitrogen-doped Ni(OH)2 nanobelts/3D Ni foam [J]. Journal of Nanoparticle Research, 2020, 22(8): 1-10.

[6]Dayong Ren, Daiyan Jiang, Yueshuang Huang, Yuhon Jin*, Chuitao Zeng, Kailing Zhou, Hao Wang*. Well-defined ternary metal phosphide nanowires with stabilized Pt nanoclusters to boost alkaline hydrogen evolution reaction[J]. Journal of Colloid and Interface Science, 2024, 665: 510-517.

[7]Dayong Ren, Guowei Wang, Leyuan Li, Yuhong Jin*, Kailing Zhou*, Chuitao Zeng, Qianqian Zhang, Jingbing Liu, Ruzhi Wang, Xiaoxing Ke*, Manling Sui, Hao Wang. Localizing electrons on atomic platinum by metal phosphides for accelerating electrocatalytic hydrogen evolution[J]. Chemical Engineering Journal, 2023, 454: 140557.

[8]Hongtian Mi, Leyuan Li, Chuitao Zeng, Yuhong Jin*, Qianqian Zhang, Kailing Zhou, Jingbing Liu, Hao Wang*. Cuboid-like phosphorus-doped metal–organic framework-derived CoSe2 on carbon cloth as an advanced bifunctional oxygen electrocatalyst for rechargeable zinc-air batteries[J]. Journal of Colloid and Interface Science, 2023, 633: 424-431.

[9]Leyuan Li, Yuhong Jin*, Chuitao Zeng, Dayong Ren, Kailing Zhou, Qianqian Zhang, Jingbing Liu, Qinqin Zhou, Hao Wang. Porous hierarchical Ni2P nanosheet arrays combined with Cu3P layers on copper foam as a binder-free battery-type cathode for high-energy-density asymmetrical all-solid-state electrochemical capacitors[J]. Journal of Energy Storage, 2022, 52: 104783.

[10]Fei Gao, Hao Liu, Kai Yang, ChuiTao Zeng, Shuping WANG, Minghao FAN, Hao Wang*. A review on materials for flame retarding and improving the thermal stability of lithium ion batteries [J]. International Journal of Electrochemncal Science, 2020, 15: 1391-1411.






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