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湖北民族大学新材料与机电工程学院导师教师师资介绍简介-谭健峰

本站小编 Free考研考试/2021-08-15


谭健峰(1990.08 -),湖北巴东人,讲师,理学博士,材料科学与工程博士后。研究方向:功能型纳米材料与器件,人工智能传感器、新能源存储器件。
电子邮箱:tanjf@hbmzu.edu.cn
教育经历2009/09 - 2013/06,武汉工程大学 材料物理,工学学士
2013/09 - 2018/06,华中师范大学 凝聚态物理(硕博连读),理学博士
2018/09 - 2020/09,武汉理工大学 材料科学与工程学院,材料复合新技术国家重点实验室,材料科学与工程博士后流动站,博士后研究员
授课经历主要讲授《理论力学》、《先进制造技术》等课程。
主要成果简介在校期间获得三好学生一次、连续五年学业专业一等奖学金、2017年博士研究生国家奖学金、2016-2017年度校级优秀研究生标兵、2018届校级优秀博士毕业生、2018届校级优秀博士毕业论文。
先后主持、参与国家自然科学基金5项(1,三维层构石墨烯薄膜阵列痕量物质探测性能与机理研究,No:**;2,ZnO基多孔阵列室温气体传感性能研究,No:**;3,锂离子电池用碳-氧化铁@导电聚合物分级复合管状阵列的构建及电化学性能研究,No:**;4,表面非晶化和电导性调制协同构建新型钛基负极用于水系钠离子电池/电容器,No:**;5,二维限域储能的高效氧化铁柱撑层状钛酸协同复合负极及其水系锂/钠离子电池,**),华中师范大学优秀博士项目2项,武汉理工大学一等博士后创新项目1项。
代表性论文[1] Tan J, Chen J, etal. Synthesis of porous α-Fe2O3 microrods via in-situ decomposition of FeC2O4 precursor for ultra-fast responding and recovering ethanol gas sensor. Sensors and Actuators B: Chemical, 2016, 230, 46. (SCI, 第一作者)
[2] Tan J, Huang X. Ultra-thin nanosheets-assembled hollowed-out hierarchical α-Fe2O3 nanorods: synthesis via an interface reaction route and its superior gas sensing properties. Sensors and Actuators B: Chemical, 2016, 237, 159. (SCI, 第一作者)
[3] Tan J, Dun M, etal. Synthesis of hollow and hollowed-out Co3O4 microspheres assembled by porous ultrathin nanosheets for ethanol gas sensors: Responding and recovering in one second. Sensors and Actuators B: Chemical, 2017, 249, 44. (SCI, 第一作者)
[4] Tan J, Dun M, etal. Self-template derived CuO nanowires assembled microspheres and its gas sensing properties. Sensors and Actuators B: Chemical, 2017, 252, 1. (SCI, 第一作者)
[5] Tan J, Tan W, etal. Fe2O3-loaded NiO nanosheets for fast response/recovery and high response gas sensor. Sensors and Actuators B: Chemical, 2018, 256, 282. (SCI, 第一作者)
[6] Tan J, Huang X. Co3O4 nanoboxes with abundant porestructure boosted ultrasensitive toluene gas sensors. Materials research express, 2018, 5, 045036. (SCI, 第一作者)
[7] Tan J, Dun M, etal. CdS quantum dots supported by ultrathin porous nanosheets assembled into hollowed-out Co3O4 microspheres: A room-temperature H2S gas sensor with ultra-fast response and recovery. Sensors and Actuators B: Chemical, 2019, 298, 126839. (SCI, 第一作者)
[8] Tan J, Liu J, etal. Electrolyte Engineering towards High-Voltage Aqueous Energy Storage materials, Energy Environmental Materials, 2020 (SCI, 第一作者)
[9] Tan J, Liu J, etal. Weak Ionization Induced Interfacial Deposition and Transformation towards Fast-Charging NaTi2(PO4)3 Nanowire Bundles for Advanced Aqueous Sodium Ion Capacitors. Advanced Functional Materials, 2021, DOI: 10.1002/adfm.. (SCI, 第一作者)
[10] Gui Q, Tan J, etal. Synergistic Coupling of Ether Electrolyte and 3D Electrode Enables Titanates with Extraordinary Coulombic Efficiency and Rate Performance for Sodium-Ion Capacitors. Small Methods, 2019, 3, **. (SCI)
[11] Li X, Tan J, etal. Microwave-assisted synthesis of Fe-doped NiO nanofoams assembled by porous nanosheets for fast response and recovery gas sensors. Materials Research Express, 2017, 4, 045015. (SCI)
[12] Li L, Tan J, etal. Porous ZnFe2O4 nanorods with net-worked nanostructure for highly sensor response and fast response acetone gas sensor. Sensors and Actuators, B: Chemical, 2017, 248, 85. (SCI)
[13] Tan W, Tan J, etal. Nanosheets-assembled hollowed-out hierarchical Co3O4 microrods for fast response/recovery gas sensor. Sensors and Actuators, B: Chemical, 2017, 249, 66. (SCI)


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