胡培,男,博士,毕业于华中科技大学材料学专业,现任湖北工业大学芯片产业学院副院长,先进电池材料与器件研究所所长,武汉英才优秀青年人才,3551光谷创业人才,湖北省科技厅和生态环境厅权威专家库专家,主持完成国家自然科学基金和中国博士后科学基金,作为负责人承担湖北省重点研发计划、湖北省技术创新专项重大专项技术(技术负责人)和湖北省高价值知识产权培育工程等项目,并与多家企业建立深度产学研合作关系,横向项目合同经费总额3460万,研究成果已在多家企业落地转化。
Zhou X., Zhou Y., Yu L., Qi L., Kyeong-Seok Oh,Hu, P.*(通讯作者), Lee Sang-Young, Chen C*. Gel polymer electrolytes for rechargeable batteries toward wide-temperature applications. Chemical Society Reviews, 2024,53, 5291-5337.
L. Dai, X. Zhou, Y. Yang,Hu P.*(通讯作者), L. Ci*. Ordered Porous Mn-co Spinel Oxide (CoMn2O4) with Vacancies Modulation as Efficient Electrocatalyst for Li-O2Battery. Journal of Colloid and Interface Science, 2024,670, 719-728
Y. Jiang, J. Lu,A. Xiang, X. Zhang, D. Liu, Z. Yang*,Hu, P.*(通讯作者). Achieving Stable Copper Ion Storage in Layered Vanadium Pentoxide. Batteries 2023, 9(12), 572
A. Xiang, D.Shi, P. Chen, Z. Li, Q. Tu, D. Liu, X. Zhang, J. Lu, Y. Jiang, Z. Yang* andHu, P.*(通讯作者). Na4Fe3(PO4)2(P2O7)@C/Ti3C2TxHybrid Cathode Materials with Enhanced Performances for Sodium-Ion Batteries.Batteries2024,10(4), 121
P. Zhang, X. Zhang, D. Liu, A. Xiang, J. Lu, Y. Jiang, Z. Yang ,Hu, P.*(通讯作者). One Pot Synthesis of Ammonium Rich Nickel Hexacyanoferrate as Stable Cathode Material for Ammonium-Ion Batteries. Batteries Supercaps 2024, 7, e202300546
J. Chen, L. Dai,Hu P.*(通讯作者), Z. Li. Facile One-Step Heat Treatment of Cu Foil for Stable Anode-Free Li Metal Batteries. MOLECUES, 2023, 28, 548
Q. Huang, L.Dai, S. Zhang,Hu P.*(通讯作者), L. Ci*. Optimization effect of Ag-regulated manganese oxides on electrocatalytic performance for Li-O2batteries. Catalysis Science & Technology. 2023,13, 6792-6798
R. Rehman, X. zhang, M. Chang, D. Qin, Y. Liu, P. Wei, C. Huang, B. Wang , F. Xiong, Y.Xu*,Hu P.*(通讯作者),J. Han, Paul K Chu*. Ni-Containing Electrolytes for Superior Zinc-Ion Aqueous Batteries. ACS Omega 2022, 7, 38, 33942–33948.
Hua Wang;Pei Hu(共同第一作者); Xueting Liu;Yue Shen;Lixia Yuan;Zhen Li and Yunhui Huang; Sowing Silver Seeds within Patterned Ditches for Dendrite-free Lithium Metal Batteries.Advanced Science, 2021,8,14,2100684.
Hu, P.; Chen, C. J. *; Zeng, R.; Xiang, J. W.; Huang, Y.; Hou, D. F.; Li, Q. *; Huang, Y. H.* Facile synthesis of bimodal porous graphitic carbon nitride nanosheets as efficient photocatalysts for hydrogen evolution.Nano Energy, 2018, 50, 376-382.
Hu, P.; Hou, D. F.; Wen, Y. W.; Shan, B.; Chen, C. J.; Huang, Y. H.*; Hu, X. L.* Self-assembled 3D hierarchical sheaf-like Nb3O7(OH) nanostructures with enhanced photocatalytic activity.Nanoscale, 2015, 7, 1963-1969.
Hu, P.; Hou D. F.; Shi H. Y.; Chen C. J.; Huang Y. H.; Hu X. L.* Microwave-assisted synthesis of self-assembled BiO1.84H0.08hierarchical nanostructures as a new photocatalyst.Appl. Surf. Sci., 2014, 319, 244-249.
Hu, P.; Hu, X. L.*; Chen, C. J.; Hou, D. F.; Huang, Y. H.* Biomaterial-assisted synthesis of AgCl@Ag concave cubes with efficient visible-light-driven photocatalytic activity.CrystEngComm, 2014, 16, 649-653.
Chen, C. J.;Hu, P.(共同第一作者); Hu, X. L.;* Mei, Y. N.; Huang, Y. H.* Bismuth oxyiodide nanosheets: a novel high-energy anode material for lithium-ion batteries.Chem. Commun., 2015, 51, 2798-2801.
Miao, Z. P.;Hu, P.(通讯作者) *; Nie, C. Y.; Xie, H.; Fu, W. L.; Li, Q.* ZrO2nanoparticles anchored on nitrogen-doped carbon nanosheets as efficient catalyst for electrochemical CO2reduction.J. Energy.Chem., 2019, 38, 114-118.
Hu, F.; Li, Y. Y.; Wei, Y.; Yang, J. Y.;Hu, P.*(通讯作者); Rao, Z. X.; Chen, X.; Yuan, L. X.; Li, Z.* Construct an ultrathin bismuth buffer for stable solid-state lithium metal batteries.ACS Appl. Mater. Interfaces,2020, 11, 12793-12800.
Sun, Q.; Huang, Y.; Wu S.; Gao, Z. H.; Liu, H.;Hu, P.*(通讯作者); Qie, L.* Facile ynthesis of Sn/Nitrogen-doped reduced graphene oxide nanocomposites with superb lithium storage properties.Nanomaterials, 2019, 9, 1084-1093.
Liu, H., Cai, J.; Luo, M.; Chen, C.;Hu P.*(通讯作者) Novel mesoporous bismuth oxyiodide singlecrystal nanosheets with enhanced catalytic activity.RSC Adv., 2020, 10, 5913-5918.
Chen, X.,Hu P.*(通讯作者), Xiang, J. W., Zhang, R. Y. , Huang, Y. H. Confining Silicon Nanoparticles within Freestanding Multichannel Carbon Fibers for High-Performance Li-Ion Batteries.ACS Appl. Energy Mater.2019, 2, 5214−5218.
Chen, C. J.; Wen, Y. W.; Hu, X. L.;*, Ji, X. L.; Yan, M. Y.; Mai, L. Q.;Hu, P.; Shan, B.; Huang, Y. H.* Na+ intercalation pseudocapacitance in graphene coupled titanium oxide enabling ultra-fast sodium storage and long-term cycling.Nat. Commun., 2015, 6, 6929. (Hot paper)
C.Chen, H.Xu, T.Zhou, Z.Guo, L.Chen, M.Yan, L.Mai,P.Hu, S.Cheng, Y.Huang*, and J.Xie* Integrated intercalation-based and interfacial sodium storage in graphene-wrapped porous Li4Ti5O12nanofibers composite aerogel.Adv. Energy Mater.2016, 6, 1600322.
Chen, C. J.; Hu, X. L.;* Wang, Z. H. ; Xiong, X. Q.;Hu, P.; Liu, Y.; Huang, Y. H.* Controllable growth of TiO2-B nanosheet arrays on carbon nanotubes as a high-rate anode material for lithium-ion batteries.Carbon, 2014, 69, 302-310.
Hou, D. F.; Hu, X. L.;* Wen, Y. W.; Shan, B.;*Hu, P.; Xiong, X. Q.; Qiao, Y.; Huang, Y. H. Electrospun sillenite Bi12MO20 (M = Ti, Ge, Si) nanofibers: general synthesis, band structure, and photocatalytic activity.Phys. Chem. Chem. Phys., 2013,15, 20698-20705.
Chen, C. J.; Hu, X. L.;* Jiang, Y.; Yang, Z.;Hu, P.; Huang, Y. H.* TiO2-B Nanosheets/Anatase Nanocrystals co-Anchored on Nanoporous Graphene: In Situ Reduction-Hydrolysis Synthesis and Their Superior Rate Performance as an Anode Material.Chem. Eur. J., 2014, 20, 1383-1388.
Hou, D. F.; Hu, X. L.;*Hu, P.; Zhang, W.; Zhang, M. F.; Huang, Y. H.* Bi4Ti3O12nanofibers/BiOI nanosheets p-n junction: facile synthesis and enhanced visible-light photocatalytic activity.Nanoscale, 2013, 5, 9764-9772.
Chen, C. J.; Hu, X. L.;*Hu, P.; Qiao, Y.; Qie, L.; Huang, Y. H.* Ionic-liquid-assisted synthesis of self-assembled TiO2-B nanosheets under microwave irradiation and their enhanced lithium storage properties.Eur. J. Inorg. Chem., 2013, 30, 5320-5328.
Chen, W. M.; Chen, C. J.; Xiong, X. Q.;Hu, P.; Hao, Z. X.; Huang, Y. H.* Coordination of Surface-Induced Reaction and Intercalation: Towards a high-performance carbon anode for sodium-ion batteries,Adv. Sci., 2017,4, 1600500.
Hao, Z. X.; Yuan, L. X.;* Chen, C. J; Xiang, J. W.; Li, Y. Y.; Huang, Z. M.;Hu, P.; Huang, Y. H.* TiN as a simple and efficient polysulfide immobilizer for lithium-sulfur batteries.J. Mater. Chem. A, 2016, 4, 17711-17717.
Qie, L.; hen, W. M.; Xiong, X. Q.; Hu, C. C.; Zou, F.;Hu, P.; Huang, Y. H.* Sulfur-doped carbon with enlarged interlayer distance as a high-performance anode material for sodium-ion batteries.Adv. Sci., 2015, 1500195.
Qiao, Y.; Hu. X. L.*; Liu, Y.; Chen, C. J.; Xu, H. H.; Hou, D. F.;Hu, P.; Huang, Y. H.* Conformal N-doped carbon on nanoporous TiO2 spheres as a high-performance anode material for lithium-ion batteries.J. Mater. Chem. A, 2013, 1, 10375-10381.
Liu, Y.; Qiao, Y.; Zhang, W. X.*,Hu, P.; Chen, C. J.; Li, Z.; Yuan, L. X.; Hu, X. L. Huang, Y. H.* Facile fabrication of CuO nanosheets on Cu substrate as anode materials for electrochemical energy storage.J. Alloy Compd., 2013, 586, 208-215.