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上月  2019-04  下月
    胡凯龙

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    个人简介

    胡凯龙,男,汉族,江西吉安人,工学博士。现为哈尔滨工业大学(深圳)材料科学与工程学院助理教授,主要从事三维多孔碳材料、功能性纳米材料等方面的研究。在Nature Communications, ACS Energy Letters, Advanced Materials, Journal of Materials Chemistry A等期刊发表论文十余篇。


    研究方向

    1.三维多孔材料


    2.功能性纳米材料


    3.电化学催化与储能材料

    教育经历


    2017.04-2020.03 日本筑波大学 工学博士


    2019.05-2019.10 俄亥俄州立大学 访问学生


    2016.10-2017.03 日本东北大学 访问学生



    研究与工作经历


    2020.04-2020.12 日本筑波大学 数理物质系 博士后研究员


    2021.01-至今 哈尔滨工业大学(深圳)材料科学与工程学院 助理教授


    科研项目


    2019-2020 日本笹川财团科学研究助成金(2019-3001),主持


    2020-2022 日本学术振兴会(JSPS) Research Activity Start-up 项目(20K22546),主持(因退职中途辞退)


    2021-2023 哈尔滨工业大学(深圳)科研启动项目, 主持

    论文及著作

    (1)K. L. Hu, T. Ohto, Y. Nagata, M. Wakisaka, Y. Aoki, J.-i. Fujita, Y. Ito, Catalytic activity of graphene-covered non-noble metals governed by proton penetration in electrochemical hydrogen evolution reaction, Nature Communications, 2021, 12, 203.

    (2)K. L. Hu, L. Qin, S. Zhang, J. Zheng, J. Sun, Y. Ito, Y. Wu, Building a Reactive Armor Using S-Doped Graphene for Protecting Potassium Metal Anodes from Oxygen Crossover in K?O2 Batteries, ACS Energy Letters, 2020, 5, 1788-1793.

    (3)K. L. Hu, S. Jeong, G. Elumalai, S. Kukunuri, J.-i. Fujita, Y. Ito, Phase-Dependent Reactivity of Nickel Molybdates for Electrocatalytic Urea oxidation, ACS Applied Energy Materials, 2020, in press.

    (4)K. L. Hu, M. X. Wu, S. Hinokuma, M. Wakisaka, J.-i. Fujita, Y. Ito, Boosting Electrochemical Water Splitting via Ternary NiMoCo Hybrid Nanowire Arrays, Journal of Materials Chemistry A, 2019, 7, 2156-2164.

    (5)K. L. Hu, T. Ohto, L. H. Chen, J. H. Han, M. Wakisaka, Y. Nagata, J.-i. Fujita, Y. Ito, Graphene Layer Encapsulation of Non-Noble Metal Nanoparticles as Acid-Stable Hydrogen Evolution Catalysts, ACS Energy Letters, 2018, 3, 1539-1544.

    (6)K. L. Hu, S. Jeong, M. Wakisaka, J.-i. Fujita, Y. Ito, Bottom-up Synthesis of Porous NiMo Alloy for Hydrogen Evolution Reaction, Metals, 2018, 8, 83.

    (7)K. L. Hu, X. Liu, Q. Li, Extracting Vanadium from Stone Coal by a Cyclic Alkaline Leaching Method, Metallurgical and Materials Transactions B, 2017, 48, 1342-1347.

    (8)P. Du, K. L. Hu (共同一作), J. Lyu, H. Li, X. Lin, G. Xie, X. Liu, Y. Ito, H. J. Qiu, Anchoring Single-Atom Mo and N on Edge-Rich Nanoporous Holey Graphene as Bifunctional Air Electrode in Zn-Air Batteries, Applied Catalysis B: Environmental, 2020, 276, 119172.

    (9)H. J. Qiu, P. Du, K. L. Hu (共同一作), J. J. Gao, H. L. Li, P. Liu, T. Ina, K. Ohara, Y. Ito, M. W. Chen, Metal and Nonmetal Codoped 3D Nanoporous Graphene for Efficient Bifunctional Electrocatalysis and Rechargeable Zn–Air Batteries, Advanced Materials, 2019, 31, 1900843.

    (10)S. Jeong, K. L. Hu, T. Ohto, Y. Nagata, H. Masuda, J.-i. Fujita, Y. Ito, Effect of Graphene Encapsulation of NiMo Alloys on Oxygen Evolution Reaction, ACS Catalysis, 2020, 10, 792-799.

    (11)L. H. Chen, J. H. Han, Y. Ito, T. Fujita, G. Huang, K. L. Hu, A. Hirata, K. Watanabe, M. W. Chen, Heavily Doped and Highly Conductive Hierarchical Nanoporous Graphene for Electrochemical Hydrogen Production, Angew. Chem. Int. Ed., 2018, 57, 13302-13307.

    (12)Y. Ito, T. Ohto, D. Hojo, M. Wakisaka, Y. Nagata, L. H. Chen, K. L. Hu, M. Izumi, J.-i. Fujita, T. Adschiri, Cooperation between holey graphene and NiMo alloy for hydrogen evolution in an acidic electrolyte, ACS Catalysis, 2018, 8, 3579-3586.

    (13)I. D. Bernardo, G. Avvisati, C. Y. Chen, J. Avila, M. C. Asensio, K. L. Hu, Y. Ito, P. Hines, J. L. Duffin, L. Rintoul, N. Motta, C. Mariani, M. G. Betti, Topology and doping effects in three-dimensional nanoporous graphene, Carbon, 2018, 131, 258-265.

    (14)A. Kumatani, C. Miura, H. Kuramochi, T. Ohto, M. Wakisaka, Y. Nagata, H. Ida, Y. Takahashi, K. L. Hu, S. Jeong, J.-i. Fujita, T. Matue, Y. Ito, Chemical dopants on edge of holey graphene accelerate electrochemical hydrogen evolution reaction, Advanced Science, 2019, 1900119.

    (15)Y. Ito, Y. Habata, H. Kuramochi, E. Kusuda, K. L. Hu, H. Masuda, J. Fujita, Y. Nagata, M. Watanabe, A. Isdepsky, Damage-Free Solar Dewatering of Micro-Algal Concentrates via Multifunctional Hierarchical Porous Graphene, Advanced Sustainable Systems, 2019, 1900045.

    (16) M. M. S. Abdelnabi, E. Blundo, M. G. Betti, G. Cavoto, E. Placidi, A. Polimeni, Al. Ruocco, K. L. Hu, Y. Ito, C. Mariani, Towards free-standing graphane: atomic hydrogen and deuterium bonding to nano-porous graphene, Nanotechnology, 32, 2020, 035707.

    (17) M. M. S. Abdelnabi, C. Izzo, E. Blundo, M. G. Betti, M. Sbroscia, G. D. Bella, G. Cavoto, A. Polimeni, I. García-Cortés, I. Rucandio, A. Moro?o, K. L. Hu, Y. Ito, C. Mariani, Deuterium Adsorption on Free-Standing Graphene, Nanomaterials, 2021, 11 130.