教授
邮箱:jzhu@hnu.edu.cn或zj19871111@163.com
QQ:315555810
办公室:湖南大学新化工楼D区307
二维材料课题组网址:nanotech.hnu.edu.cn
朱建,中共党员、教授、博士生导师,1987年11月出生,应用化学系主任。主要研究功能纳米材料在电化学储能方面的应用,主持科研项目15项。近5年,以通讯作者发表P. Natl. Acad. Sci. USA.、Nat. Sci. Rev.、Nat. Commun.Angew. Chem. Int. Ed.CCS Chem.Adv. Mater.在内的学术论文61篇,授权专利17项。另外,基于相关研究出版专著2本,作为指导老师获得中国国际“互联网+”大学生创新创业大赛金奖等创新创业奖60余项(国家级11项、省级25项)。
2007.09-2011.06湖南大学化工学院化学专业学士
2011.09-2013.06湖南大学化工学院化学工程与技术硕士
2013.06-2017.04湖南大学物理与微电子科学学院物理学博士
2015.10-2017.03加州大学洛杉矶分校(UCLA)化学与生物化学系联合培养博士
2017.05-2021.12副教授,湖南大学化学化工学院
2022.01-至今教授,湖南大学化学化工学院
[1]国家自然科学基金委员会,面上项目,52074113,基于飞秒激光构建的多级多孔铜和铝集流体用于锂金属电池的研究,2021-01-01至2024-12-31,在研,主持
[2]国家自然科学基金委员会,青年基金,22005091,基于高工作电压、共轭导电聚对苯插层石墨正极用于钾双离子电池的研究,2021-01-01至2023-12-31,结题,主持
[3]中信金属宁波能源有限公司,横向项目,H202191380246,石墨和石墨烯-铌复合材料应用于超高倍率的能源储存设备,2021-06-07至2023-6-6,结题,主持
[4]湖南大学,优秀青年科学基金培育,531118040319,锂离子电池储能材料与器件,2021-06至2023-6,结题,主持
[5]长沙市科学技术局,自然科学基金,kq2014037,基于硫化钼和钴单原子双活性催化剂应用于锂硫电池的研究,2020-07-01至2021-12-31,结题,主持
[6]湖南大学,湖南大学科研启动人才项目专项,531107051048,多孔石墨烯/黑磷复合电极的储钠机理及其微观结构调控对性能影响研究,2017-05-05至2021-12-31,结题,主持
[7]湖南省科技厅,湖南省“湖湘英才”,2021RC3055,锂离子电池合金储能材料与器件,2022-01-01至2024-12-31,在研,主持
[8]重庆市组织部,重庆英才·青年 拔尖人才,CQYC202105015,锂离子电池合金储能材料与器件,2022-01-01至2024-12-31,在研,主持
[9]深圳市科技创新委员会,深圳虚拟大学园自由探索类基础研究项目,2021Szvup036,新型三维石墨烯/氧化亚硅复合负极材料用于高负载量柔性锂离子电池的研究,2021-08-30至2022-12-31,结题,主持
[10]福建省功能材料及应用重点实验室开放基金,fma2017205,氮掺杂多孔石墨烯的储锂机理及其微观结构调控对性能影响研究,2017-09至2019-09,结题,主持
[11]广州纽安纳科技有限公司,横向项目,H202291380091,镍锰二元正极材料的规模化制备,2022-03-09至2024-03-08,在研,主持
[12]科技部青年科学家项目“储能与智能电网技术”重点专项,2022YFB2402400,微纳结构碳固载有机复合电极及宽温域有机锂电池,2023-01-01至2026-12-31,在研,子课题负责人(4/4)
[13]绵阳市斯麦尔顾生物科技有限公司,横向项目,900202400442,石墨-铌复合材料应用于超高倍率的能源储存设备,2023-05-30至2024-5-23,在研,主持
发表论文:
[1].Jian Zhu*,et al.Selective catalysis-mediated interface to stabilize antimony atom-cluster anode for robust potassium-ion batteries.Angewandte Chemie-international Edition 2025,e202511870.
[2]Jian Zhu*,et al.Deep P-C interface reconstruction for high-performance potassium storage.Advanced Functional Materials 2025,35,9,2416361.
[3]Jian Zhu*,et al.Strategy utilizing lithiophilic gradients for dendrite-free lithium metal battery.Chemical Engineering Journal 2025,510,161788.
[4]Jian Zhu*,et al.Erecting stable lithium metal batteries:comprehensive review and future prospects.Advanced Functional Materials 2025,2504990.
[5]Jian Zhu*,et al.Promoting robust potassium storage via engineered Zn-S bond.Advanced Energy Materials 2025,2501487.
[6]Jian Zhu*,et al.Stable and efficient lithium storage via Ni ratio and calcination temperatures modulation in Ni-Mn layered cathodes.Rare Metals 2025,44,6015-6025.
[7]36.Jian Zhu*,et al.Super electrolyte-philic all-inorganic ceramic separators for highly robust lithium batteries.Energy Storage Materials 2025,80,104389.
[8]Jian Zhu*,et al.Coordination engineering for iron-based hexacyanoferrate as high stability cathode for sodium-ion batteries.Proceedings of the National Academy of Sciences of the United States of America 2024,121(31),e2319193121.
[9]Jian Zhu*,et al.High-entropy transition metal phosphorus trichalcogenides for rapid sodium ion diffusion.Advanced Materials 2024,2405170.
[10]Jian Zhu*,et al.Surface cobaltization for boosted kinetics and excellent stability of nickel-rich layered cathodes.National Science Open 2024,3,6,20240010.
[11]Jian Zhu*,et al.Atomic selenium regulating endows three-dimensional N-doped carbon with fast and stable potassium ion storage.Chemical Engineering Journal 2024,490,151855.
[12]Jian Zhu*,et al.Advanced potassium-ion batteries with high areal capacity.CCS Chemistry 2024,6,1011-1023.
[13]Jian Zhu*,et al.In situ synthesis of Fe7Se8 with a yolk-shell structure achieves fast and stabilized potassium storage.Cell Reports Physical Science 2023,4,101736.
[14]Jian Zhu*,et al.Microenvironment engineering for guiding spatially and epitaxially uniform lithium plating in lithium metal batteries.Energy Storage Materials 2023,61,102878.
[15]Jian Zhu*,et al.Dual-strategy coupling driven versatile carbon-based anode for potassium-ion/potassium metal storage.Chemical Engineering Journal 2023,473,145155.
[16]Jian Zhu*,et al.Enhanced potassium-ion storage performance of bimetallic-sulfide based on regulatory reaction mechanism.Chemical Engineering Journal 2023,466,143342.
[17]Jian Zhu*,et al.Phase-engineered cathode for super-stable potassium storage.Nature Communications,2023,14,644.
[18]Jian Zhu*,et al.Synergistic engineering of structural and electronic regulation of In2Se3 for ultrastable Li-ion battery.Chemical Engineering Journal 2023,453(2),139841.
[19]Jian Zhu*,et al.Confined bismuth-organic framework anode for high-energy potassium-ion batteries.Small Methods 2023,220155.
[20]Jian Zhu*,et al.The promises,challenges and pathways to room-temperature sodium-sulfur batteries.National Science Review 2022,9(3),nwab050.
[21]Jian Zhu*,et al.Intercalation and covalent bonding strategies for constructing a stable cathode for high-energy density and long-cycling potassium-organic batteries.Chemical Engineering Journal 2022,431,133215.
[22]Jian Zhu*,et al. A silicon monoxide lithium-ion battery anode with utrahigh areal capacity.Nano-Micro Letters2022,14(1),1-15.
[23]Jian Zhu*,et al.In situ formation of lithiophilic Li22Sn5 alloy and high Li-ion conductive Li2S/Li2Se via metal chalcogenide SnSSe for dendrite-free Li metal anodes.Journal of Energy Chemistry 2022,73,339-347.
[24]Jian Zhu*,et al.N/S co-doped carbon nanotube bundle as high-capacity anode for potassium-ion battery.Nano Research 2022,15(3),2040–2046.
[25]Jian Zhu*,et al.Lithiophilic interphase porous buffer layer toward uniform nucleation in lithium metal anodes.Advanced Functional Materials 2022,2206388.
[26]Jian Zhu*,et al.3D holey graphene/polyacrylonitrile sulfur composite architecture for high loading lithium sulfur batteries.Advanced Energy Materials 2021,11(16),2100448.
[27]Jian Zhu*,et al.Dual carbon electrode based high-energy-density potassium-ion hybrid capacitor.ACS Applied Materials&Interfaces 2021,13(7),8497−8506.
[28]Jian Zhu*,et al.Hierarchically porous Cu current collector with lithiophilic CuxO interphase towards high-performance lithium metal batteries.Journal of Energy Chemistry 2021,58,292-299.
[29]Jian Zhu*,et al.Hierarchically micro/nanostructured current collectors induced by ultrafast femtosecond laser strategy for high-performance lithium-ion batteries.Energy Environmental Materials 2021,0,1-8.
[30]Jian Zhu*,et al.Radial pores in nitrogen/oxygen dual-doped carbon nanospheres anode boost high-power and ultra-stable potassium-ion batteries.Advanced Functional Materials 2021,31(51),2107246.
[31]Jian Zhu*,et al.Fast-charging nonaqueous potassium ion batteries enabled by rational construction of oxygen-rich porous nanofiber anode.ACS Applied Materials&Interfaces 2021,13(42),50005-50016.
[32]Jian Zhu*,et al.An ultrastable nonaqueous potassium-ion hybrid capacitor.Advanced Functional Materials 2020,30(40),2004247.
[33]Jian Zhu*,et al.Ultra-stable lithium-ion batteries based on MOF-derived In2O3 nanocrystals/hierarchically porous nitrogen-doped carbon anode.Energy Environmental Materials 2020,3(2),177-185.
[34]Jian Zhu*,et al. Cocoon silk-derived, hierarchically porous carbon as anode for highly robust potassium-ion hybrid capacitors.Nano-Micro Letters2020,12(1),1-13.
[35]Jian Zhu*,et al.A high capacity and working voltage potassium-based dual ion batteries.Energy Environmental Materials 2020,4(3),413-420.
[36]Jian Zhu*,et al.Hierarchically porous N-doped carbon fibers as a free-standing anode for high-capacity potassium-based dual-ion battery.Advanced Energy Materials 2019,9(37),1901663.
[37].Jian Zhu*,et al.High performance bimetal sulfides for lithium-sulfur batteries.Chemical Engineering Journal 2019,358,955-961.
[38]Jian Zhu,et al.A hyperaccumulation pathway to three-dimensional hierarchical porous composites from halophytic plants.Nature Communications 2016,7(1),13432.
[39]Jian Zhu,et al.Atomic scale control of silicon expansion space as ultra-stable battery anodes.ACS Nano 2016,10(9),8243-8251.
[40]Jian Zhu,et al.Electrospinning preparation of ultra-long aligned nanofibers thin films for high performance fully flexible lithium-ion batteries,Nano Energy 2015,12,339-346.
[41]Jian Zhu,et al.Graphene double protection strategy to improve the SnO2 electrode performance anodes for lithium-ion batteries,Nano Energy 2014,3,80-87.
[42]Jian Zhu,et al.Ultrafine Au nanoparticles decorated NiCo2O4 nanotubes as anode material for high-performance supercapacitor and lithium-ion battery applications,Nano Energy 2014,7,114-123.
[1]2011湖南省优秀毕业生
[2]2012湖南省百佳优秀学生党员
[3]2014中国百篇最具影响国际学术论文
[4]2018湖南大学优秀班主任
[5]2020大学生创新训练(SIT)计划国家级一等奖(指导老师)
[6]2020第六届湖南省“互联网+”大学生创新创业大赛一等奖(指导老师)
[7]2020湖南省第十二届大学生课外化学化工类创新作品竞赛特等奖1项、一等奖2项(指导老师)
[8]2020湖南省第十届大学生化学化工学科竞赛一等奖1项、二等奖2项(指导老师)
[9]2020中国国际“互联网+”大学生创新创业大赛铜奖(指导老师)
[10]2021湖南省湖湘英才
[11]2021重庆英才·青年 拔尖人才
[12]2021大学生创新训练(SIT)计划国家级二等奖(指导老师)
[13]2021第十四届“挑战杯”湖南省大学生课外学术科技作品竞赛特等奖(指导老师)
[14]2021湖南大学青年教工示范岗
[15]2021全国大学生化学实验邀请赛一等奖1项、二等奖1项、三等奖1项(指导老师)
[16]2021湖南省十一届大学生化学化工实验与创新设计竞赛一等奖1项、三等奖2项(指导老师)
[17]2021“建行杯”第七届湖南省“互联网+”大学生创新创业大赛国赛选拔赛三等奖(指导老师)
[18]2022第十七届“挑战杯”全国大学生课外学术科技作品竞赛国家级二等奖(指导老师)
[19]2022第六届中国石油和化工教育教学成果认定国家级二等奖,理工融合协同创新驱动的化工类人才培养模式探索与实践(参与人)
[20]2022“建行杯”第八届湖南省“互联网+”大学生创新创业大赛一等奖(指导老师)
[21]2022第八届中国国际“互联网+”大学生创新创业大赛铜奖(指导老师)
[22]2022湖南省十二届大学生化学化工实验与创新设计竞赛一等奖1项、二等奖1项、三等奖1项(指导老师)
[23]2022湖南大学年度教学优秀奖
[24]2022湖南大学2021年教学成果奖二等奖(思政-教研-竞赛-创新创业“四轮驱动”育化学创新人才的探索和实践)
[25]2022年度中国优秀希望学子(1/50)
[26]2023湖南省第九届“互联网+”大学生创新创业大赛一等奖(指导老师)
[27]2023湖南省第九届“互联网+”大学生创新创业大赛金奖(指导老师)
[28]2023湖南省第九届“互联网+”大学生创新创业大赛“红枫计划”最具投资奖(指导老师)
[29]2023第九届中国国际“互联网+”大学生创新创业大赛金奖(指导老师)
[30]2023中国国际大学生创新大赛优秀创新创业导师
[31]2024第十一届中国青年创青春大赛银奖(指导老师)
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