唐浩林

武汉理工大学材料科学与工程学院博士生导师

唐浩林

唐浩林,男,汉族,1981年2月出生,武汉理工大学材料科学与工程学院教授、博士生导师。他在燃料电池、锂离子电池及其隔膜关键材料领域有着深入的研究,并在国际学术期刊上发表了150余篇SCI论文。唐浩林教授的科研成果已成功应用于产业,对推动相关技术的发展做出了重要贡献。1997.9-2001.6,武汉理工大学材料学院,学士。

唐浩林,男,汉族,1981年2月出生,武汉理工大学材料科学与工程学院教授、博士生导师。他在燃料电池、锂离子电池及其隔膜关键材料领域有着深入的研究,并在国际学术期刊上发表了150余篇SCI论文。唐浩林教授的科研成果已成功应用于产业,对推动相关技术的发展做出了重要贡献。

教育经历

1997.9-2001.6,武汉理工大学材料学院,学士。

2001.9-2004.6,武汉理工大学材料复合新技术国家重点实验室,硕士。

2004.9-2007.6,武汉理工大学材料复合新技术国家重点实验室,博士。

工作经历

2007.6-2008.2,武汉理工大学材料复合新技术国家重点实验室,助理研究员。

2007.12-2008.12,新加坡南洋理工大学,Research Fellow。

2008.3-2011.8,武汉理工大学材料复合新技术国家重点实验室,副教授。

2011.9-至今,武汉理工大学材料复合新技术国家重点实验室,教授、博士生导师。

主要成就

2011年入选“武汉市晨光计划”,2012年入选教育部“新世纪人才支持计划”,2014年获湖北省“杰出青年基金”资助、第十四届“霍英东青年教师奖”,2016年获批为“湖北省创新战略团队”带头人,2018年入选国家“中青年科技创新领军人才”并作为“创新人才推进计划”对象。社会兼职有中国太阳能协会会员、美国电化学协会会员,围绕燃料电池、锂离子电池及其隔膜关键材料,主持863课题4项、国家自然科学基金3项、其它省部级项目8项,在Adv. Mater., Adv. Energy Mater., Adv. Funct. Mater., Nano Energy等期刊发表SCI论文150余篇,开发的复合离子交换膜及其膜电极、锂离子电池三层共挤隔膜已投入产业应用。

学术成果

近年来作为第一作者或通信作者的代表性论文:

1.Cai S, Rui W, Yourey W, et al. An efficient bifunctional electrocatalyst derived from layer-by-layer self-assembly of a three-dimensional porous Co-N-C@graphene[J]. Science Bulletin, 2019, 64(14), 968-975.

2.Meng Z, Cai S, Rui W, et al. Bimetallic-organic framework-derived hierarchically porous Co-Zn-N-C as efficient catalyst for acidic oxygen reduction reaction[J]. Applied Catalysis B: Environmental, 2019, 244, 120-127.

3.Qu D, You X, Feng X, et al. Lithium ion supercapacitor composed by Si-based anode and hierarchal porous carbon cathode with super long cycle life[J]. Applied Surface Science, 2019, 463, 879-888.

4.Xue S, Deng W, Yang F, et al. Hexapod PtRuCu Nanocrystalline Alloy for Highly Efficient and Stable Methanol Oxidation[J]. ACS Catalysis, 2018, 8(8), 7578-7584.

5.Li H, Xie Q, Wang R, et al. Self-assembled 3DOM macro-/mesoporous TiO2, photoanode for dye-sensitized solar cells[J]. Applied Surface Science, 2018, 439, 1026-1033.

6.Wang R, Cao J, Cai S, et al. MOF@Cellulose Derived Co–N–C Nanowire Network as an Advanced Reversible Oxygen Electrocatalyst for Rechargeable Zinc–Air Batteries[J]. ACS Applied Energy Materials, 2018, 1(3), 1060-1068.

7.Amiinu I S, Liu X, Pu Z, et al. From 3D ZIF Nanocrystals to Co-Nx/C Nanorod Array Electrocatalysts for ORR, OER and Zn-air Batteries[J]. Advanced Functional Materials, 2018, 28(5), 1704638.

8.Jiang Y, Zhang Y, Yan X, et al. A sustainable route from fly ash to silicon nanorods for high performance lithium ion batteries[J]. Chemical Engineering Journal, 2017, 330, 1052-1059.

9.Wang R, Cai S, Yan Y, et al. A novel high-performance electrode architecture for supercapacitors: Fe2O3 nanocube and carbon nanotube functionalized carbon[J]. Journal of Materials Chemistry A, 2017, 5(43). 22648-22653.

10.Cai S, Meng Z, Tang H, et al. 3D Co-N-doped Hollow Carbon Spheres as Excellent Bifunctional Electrocatalysts for Oxygen Reduction Reaction and Oxygen Evolution Reaction[J]. Applied Catalysis B Environmental, 2017, 217. 477-484.

11.Yan Y. Tang H, Wu F, et al. Facile synthesis of Fe2O3@graphite nanoparticle composite as the anode for Lithium ion batteries with high cyclic stability[J]. Electrochimica Acta, 2017, 253, 104-113.

12.Zhu Z, Yan X, Tang H, et al. Protic ionic liquid modified electrocatalyst enables robust anode under cell reversal condition[J]. Journal of Power Sources, 2017, 351, 138-144.

13.He D, Tang H, Kou Z, et al. Engineered Graphene Materials: Synthesis and Applications for Polymer Electrolyte Membrane Fuel Cells[J]. Advanced Materials, 2017, 29(20), 1601741.

14.Yuan J, Fan M, Zhang F, et al. Amine-functionalized poly(ionic liquid) brushes for carbon dioxide adsorption[J]. Chemical Engineering Journal, 2017, 316, 903-910.

15.Tang H, Zeng Y, Zeng Y, et al. Iron-embedded nitrogen doped carbon frameworks as robust catalyst for oxygen reduction reaction in microbial fuel cells[J]. Applied Catalysis B: Environmental, 2017, 202, 550-556.

16.Zhang X, Luo J, Tang P, et al. A universal strategy for metal oxide anchored and binder-free carbon matrix electrode: A supercapacitor case with superior rate performance and high mass loading[J]. Nano energy, 2017, 31, 311-321.

17.Xiang Y, Li J, Lei J, et al. Advanced Separators for Lithium-Ion and Lithium-Sulfur Batteries: A Review of Recent Progress[J]. Chemsuschem, 2016, 9(21), 3023-3039.

18.Chen X, Tang H, Putzeys T, et al. Guanidinium nonaflate as a solid-state proton conductor[J]. Journal of Materials Chemistry A, 2016, 4(31), 12241-12252.

19.Wu H, Shi L, Lei J, et al. Nitrogen and sulfur co-doped carbon with three-dimensional ordered macroporosity: An efficient metal-free oxygen reduction catalyst derived from ionic liquid[J]. Journal of Power Sources, 2016, 323, 90-96.

20.Tang H, Zeng Y, Liu D, et al. Dual-doped mesoporous carbon synthesized by a novel nanocasting method with superior catalytic activity for oxygen reduction[J]. Nano Energy, 2016, 26, 131-138.

21.Tang H, Zeng Y, Gao X, et al. Octa(aminophenyl)silsesquioxane derived nitrogen-doped well-defined nanoporous carbon materials: Synthesis and application for supercapacitors[J]. Electrochimica Acta, 2016, 194, 143-150.

22.Tang H, Cai S, Xie S, et al. Metal–Organic Framework‐Derived Dual Metal and Nitrogen‐Doped Carbon as Efficient and Robust Oxygen Reduction Reaction Catalysts for Microbial Fuel Cells[J]. Advanced Science, 2016, 3(2), 1487-1498.

23.Qu D, Zhu X, Zheng D, et al. Improve Electrochemical Hydrogen Insertion on the Carbon Materials Loaded with Pt nano-particles through H spillover[J]. Electrochimica Acta, 2015, 174, 400-405.

24.Tang H, Xiong M, Qu D, et al. Enhanced supercapacitive performance on TiO2@C coaxial nano-rod array through a bio-inspired approach[J]. Nano Energy, 2015, 15, 75-82.

25.Zeng Y, Han Y, Zhao Y, et al. Advanced Ti-Doped Fe2O3@PEDOT Core/Shell Anode for High-Energy Asymmetric Supercapacitors[J]. Advanced Energy Materials, 2015, 5(12), 1402176.

26.Li J, Tang H, Chen R, et al. Highly ordered 3D macroporous scaffold supported Pt/C oxygen electrodes with superior gas-proton transportation properties and activities for fuel cells[J]. Journal of Materials Chemistry A, 2015, 3(29), 15001-15007.

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