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徐象繁
2023-05-13 11:14
  • 徐象繁
  • 徐象繁 - 教授 博导-同济大学-物理科学与工程学院-个人资料

近期热点

资料介绍

个人简历


2003年毕业于浙江大学大学物理系,获理学学士学位;2008年毕业于浙江大学大学物理系,获博士学位,专业为凝聚态物理;攻读博士学位期间主要从事强关联体系热电及磁热实验研究工作。之后在新加坡国立大学物理系/石墨烯研究中心进行博士后研究,从事低维材料如石墨烯的反常热导率及其相关应用工作。2013年3月加入同济大学物理科学与工程学院/基础科学高等研究院/声子学与热能科学中心,

研究领域


从事低维材料热传输实验研究。现为\"领航\"特聘研究员,博士生导师。

近期论文


(18) Conformal Hexagonal-Boron Nitride Dielectric Interface for Tungsten Diselenide Devices with Improved Mobility and Thermal Dissipation, Nature Communications 10, 1188 (2019) (17) Thickness-Dependent In-Plane Thermal Conductivity and Enhanced Thermoelectric Performance in p-Type ZrTe5 Nanoribbons, Phys. Status Solidi RRL, DOI: 10.1002/pssr.201800529 (2018) (16) Thermal rectification in Y-junction carbon nanotube bundle, Carbon 140, 673 (2018) (15) High thermal conductivity and superior thermal stability of amorphous PMDA/ODA nanofiber, Applied Physics Letters 112, 221904 (2018) (14) Measuring the thermal conductivity and interfacial thermal resistance of suspended MoS2 using electron beam self-heating technique, Science Bulletin 63, 452(2018) (13) Dimensional crossover of heat conduction in amorphous Polyimide nanofibers, National Science Review 5, 500 (2018) (12) Thermal conductivity of few layer MoS2, Nanoscale 10, 2727 (2018)封面文章 (11) Elastic Modulus and Thermal Conductivity of Thiolene TiO2 Nanocomposites, J. Phys. Chem. C 121, 25568-25575 (2017) (10) Thermal conduction across a boron nitride and SiO2 interface, J. Phys. D: Appl. Phys. 50, 104002 (2017) (9) Superior thermal conductivity in suspended bilayer hexagonal boron nitride, Sci. Rep. 6, 25334 (2016) (8) Length dependent thermal conductivity in Suspended Graphene, Nature Communications 5, 3689 (2014) (7) Large thermoelectricity via variable range hopping in chemical vapor deposition grown single-layer MoS2, Nano Lett. 14, 2730-2734 (2014) (6) An innovative way of etching MoS2: Characterization and mechanistic investigation, Nano Research 6, 200-207 (2013) (5) Interface Engineering of Layer-by-Layer Stacked Graphene Anodes for High-Performance Organic Solar Cells, Adv. Mater. 23, 1514 (2011) (4) Electrochemical Delamination of CVD Grown Graphene Film: Toward the Recyclable Use of Copper Catalyst, ACS Nano 5, 9927 (2011) (3) Roll-to-roll production of 30-inch graphene films for transparent electrodes, Nature Nanotechnology 5,574 (2010) (2) Toward High Throughput Interconvertible Graphane-to-Graphene Growth and Patterning, ACS Nano 4, 6146 (2010) (1) Band-dependent normal-state coherence in Sr2RuO4: Evidence from Nernst and thermopower measurements, Phys. Rev. Lett. 101, 057002 (2008)

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