• 姓名: 欧阳滔
  • 职称: 教授
  • 学位: 博士
  • 湘潭大学
  • 物理与光电工程学院
欧阳滔

基本信息

部  门: 物理系

职  称: 教授

邮  箱:   ouyangtao@xtu.edu.cn

办公室:312B

 

欧阳滔,博士生导师,教授,中共党员,湖湘青年英才,物理系系主任。本人长期围绕微纳结构中的热及热电输运特性这一核心课题开展研究,发展了微纳结构声子输运新方法;在石墨炔及新型热电材料的电声子结构及其输运方面做出了系列工作;探索了无序和人工结构调制对系统电声子输运的影响,为其在微纳电子及热控制器件的应用提供了理论依据。目前,已在Phys. Rev系列,   Appl. Phys. Lett., J. Phys. Chem. Lett.等主流学术期刊上发表第一作者或通讯作者论文60余篇,研究成果被Chem. Rev., Nature Chem.等顶尖期刊正面引用2000余次,主持国自科面上项目,JWKJW173项目子任务等省部级以上项目10项,荣获2020年度湖南省自然科学奖三等奖(第一完成人)一项,第十三届湖南省高等教育教学成果奖三等奖(第四完成人)一项。

学习工作经历

学习经历

2007.09-2012.06         湘潭大学             凝聚态物理学            理学博士

2003.09-2007.06         湘潭大学              物理学               理学学士

 

工作经历

2023.01-至今      湘潭大学    物理与光电工程学院    教授/博士生导师

2015.01-2022.12      湘潭大学    物理与光电工程学院    副教授/硕士生导师

2013.12-2015.12      德国亚琛工业大学    材料科学与工程系    博士后

2012.07-2014.12      湘潭大学    物理与光电工程学院    讲师/硕士生导师

研究方向

计算凝聚态物理:低维纳米材料热物性研究

计算材料学:功能材料设计

科研项目

近五年获批科研项目

1. 国家自然科学基金面上项目 《二维TMHs磁性材料磁声耦合机理及其高热导率结构设计》,50W在研(项目编号:52372260)。

2. 湖南省“三尖”创新人才工程项目(荷尖计划),40W   在研 (项目编号:2022RC1197)。

3. 湖南省自然科学基金面上项目 《III-V族非层状二维材料热输运特性的理论研究》,5W 在研 (项目编号:2021JJ30645)。

4. 湖南省教育厅创新平台项目 《晶格热导率反常压应变行为的机理研究》,8W 在研   (项目编号:20K127)。

5. 湖南省教育厅优秀青年项目 《新型含氮多孔二维碳纳米结构的热电输运性质研究》,6W 结题   (项目编号:17B252)。

代表性成果(专著、论文和专利等)

近五年代表性研究论文

[1] Yuwen Zhang, Chunfeng Cui, Chaoyu He * , Tao Ouyan *, Jin Li, Mingxing Chen, and Chao Tang * ,   Vertical ferroelectricity in van der Waals materials: Models and devices, Applied Physics Letters 123, 142901 (2023). [封面文章 通讯作者]

[2] Zhunyun Tang, Xiaoxia Wang, Jin Li, Chaoyu   He, Mingxing Chen, Xinghua Li, Chao Tang, and Tao Ouyang *, Low lattice thermal conductivity of two-dimensional   monolayers of BxN (x = 2, 3, and 5) induced by complex bonding networks: A   comparative study with h-BN, Applied   Physics Letters 123,   102201 (2023). [通讯作者]

[3] Yuwen Zhang, Chunfeng Cui, Tao Ouyang *, Chaoyu He, Jin Li, Mingxing Chen, and Chao Tang, Thermal   switch based on ferroelasticity V A-N binary compounds, Applied Physics Letters 122, 182204 (2023). [通讯作者]

[4] Zhunyun Tang, Xiaoxia Wang,Jin Li, Chaoyu He,   Chao Tang, Huimin Wang, Mingxing Chen, and Tao Ouyang *, Anomalous and non-monotonic strain dependent thermal   conductivity of typical negative thermal expansion material ScF 3, Applied Physics Letters 122, 172203 (2023). [通讯作者]

[5] Chunfeng Cui, Yuwen Zhang, Tao Ouyang *, Mingxing Chen, Chao Tang, Qiao Chen, Chaoyu He, Jin   Li, and Jianxin Zhong, On-the-fly machine learning potential accelerated   accurate prediction of lattice thermal conductivity of metastable silicon   crystals, Physical Review Materials 7, 033803 (2023). [通讯作者]

[6] Yuwen Zhang, Tao Ouyang *, Chaoyu He, Jin Li, and Chao Tang, Extremely promising   monolayer materials with robust ferroelectricity and extraordinary   piezoelectricity: δ-AsN, δ-SbN, and δ-BiN, Nanoscale 15, 6363 (2023). [通讯作者]

[7] Heng Lei, Tao Ouyang *, Chaoyu He, Jin Li, and Chao Tang, Monolayer group IV   monochalcogenides T-MX (M = Sn, Ge; X = S, Se) with fine piezoelectric   performance and stability, Applied   Physics Letters   122, 062903 (2023). [通讯作者]

[8] Linquan Hou, Zhunyun Tang, Guojiang Mao,   Shiheng Yin, Bei Long, Tao   Ouyang *,   Guo-Jun Deng, Atif Ali, Ting Song*, Ultrathin organic polymer with p-p   conjugated structure for simultaneous photocatalytic disulfide bond   generation and CO 2 reduction, Journal of Energy Chemistry 76, 639 (2023). [通讯作者,为实验工作提供理论计算支持]

[9] Yuwen Zhang, Tao Ouyang* , Chaoyu He* , Jin Li , and Chao Tang* ,   Monolayer group-V binary compounds ψ-BiP and ψ-SbP with ultrahigh   piezoelectricity and stability, Physical   Review Materials   7, 016001 (2023). [通讯作者]

[10] Jiang-Jiang Ma, Qing-Yi Liu, Peng-Fei Liu,   Ping Zhang, Biplab Sanyal, Tao   Ouyang* , and Bao-Tian Wang*, Ultralow thermal conductivity and   anisotropic thermoelectric performance in layered materials LaMOCh (M = Cu,   Ag; Ch = S, Se), Physical   Chemistry Chemical Physics 24, 21261 (2022). [通讯作者]

[11] Hanqing Li, Pei Zhang, Tao Ouyang* , Huiming Wang* , Jin Li,   Chaoyu He, Chunxiao Zhang, and Chao Tang* , Notable effect of magnetic order on the   phonon transport in semi-hydrogenated graphene, Applied Physics Letters 120, 092403 (2022). [通讯作者]

[12] Mohammed   Al-Fahdi,  Tao Ouyang* and Ming   Hu*, High-throughput computation of novel ternary B–C–N structures and   carbon allotropes with electronic-level insights into superhard materials   from machine learning,  Journal of   Materials Chemistry A   9 27596 (2021). [通讯作者]

[13] Huimin   Wang, E Zhou, Fuqing Duan, Donghai Wei, Xiong Zheng, Chao Tang, Tao   Ouyang*, Yagang Yao,* Guangzhao Qin,* and Jianxin Zhong, Unique   Arrangement of Atoms Leads to Low Thermal Conductivity: A Comparative Study   of Monolayer Mg2C, The Journal of Physical Chemistry Letters 12, 10353   (2021). [通讯作者]

[14] Pei   Zhang,  Tao Ouyang*, Chao Tang*, Chaoyu He, Jin   Li, Chunxiao Zhang, Ming Hu* and jianxin Zhong, The intrinsic thermal   transport properties of the biphenylene network and the influence of   hydrogenation: a first-principles study,  Journal of Materials Chemistry C  9 16945 (2021). [封面文章 通讯作者]

[15] Qiang   Chen, Pei Zhang,  Tao Ouyang*, Xiaoliang Zhang*,   and Guangzhao Qin*, Ultra-high thermal conductivities of tetrahedral   carbon allotropes with non-simple structures,  Physical Chemistry Chemical Physics   23 24550 (2021). [封面文章 通讯作者]

[16] Jin   Li, Shifang Li, Tao Ouyang*, Chunxiao Zhang, Chao Tang, Chaoyu   He*, and Jianxin Zhong, Two-Dimensional Carbon Allotropes and Nanoribbons   based on 2,6-Polyazulene Chains: Stacking Stabilities and Electronic   Properties, The Journal of Physical Chemistry Letters 12, 732 (2021). [通讯作者]

[17] Pei   Zhang,  Tao Ouyang*, Jin Li*,, Chaoyu He,   Yuanping Chen*, Chunxiao Zhang, Chao Tang and Jianxin Zhong, Tunable   topologically nontrivial states in newly discovered graphyne allotropes: from   Dirac nodal grid to Dirac nodal loop,  Nanotechnology 32 485705 (2021). [通讯作者]

[18] Chunfeng   Cui ,  Tao Ouyang*, Chao Tang*, Chaoyu He, Jin   Li, Chunxiao Zhang, and Jianxin Zhong, Bayesian optimization-based design of   defect gamma-graphyne nanoribbons with high thermoelectric conversion   efficiency,  Carbon 176   52 (2021). [通讯作者]

[19] Pinglan   Yan,  Tao Ouyang*, Chaoyu He,* Jin Li,* Chunxiao   Zhang, Chao Tang, and Jianxin Zhong, Newly discovered graphyne allotrope with   rare and robust Dirac node loop,  Nanoscale 13,   3564 (2021). [通讯作者]

[20] Tao Ouyang, Chunfeng Cui, Xizhi Shi,   Chaoyu He*, Jin Li, Chunxiao Zhang, Chao Tang, and Jianxin   Zhong, Systematic Enumeration of Low-Energy Graphyne Allotropes Based on   a Coordination-Constrained Searching Strategy,  Phys. Status Solidi RRL 14,   2000437 (2020).

[21] Qingyi   Liu, Tao Ouyang*, Guangzhao Qin*, Chaoyu He, Jin Li,   Chunxiao Zhang, Chao Tang, and Jianxin Zhong, Quasi-bonding driven   abnormal isotropic thermal transport in intrinsically anisotropic   nanostructure: a case of study of a phosphorus nanotube array,  Nanotechnology 31 095704   (2020). [通讯作者]

[22] Tao Ouyang*, Qingyi Liu, Mingxing Chen,   Chao Tang, Jin Li, Chunxiao Zhang, Chaoyu He, Hua Bao*, Jianxin Zhong, and   Ming Hu*, Doping Induced Abnormal Contraction and Significant Reduction   of Lattice Thermal Conductivity of Open Framework Si24,  ES Energy & Environment 3,   88 (2019). [荣获ES最佳论文奖].

[23] Tao Ouyang, Enlai Jiang, Chao Tang,   Jin Li, Chaoyu He, and Jianxin Zhong, Thermal and thermoelectric  properties of monolayer indium triphosphide (InP3): a first-principles   study,  Journal of Materials   Chemistry A  6,   21532 (2018). 

[24] Huaping   Xiao, Wei Cao,  Tao Ouyang*, Xiaoyan Xu,   Yingchun Ding, and Jianxin Zhong, Thermoelectric properties of graphene   nanoribbons with surface roughness,  Applied   Physics Letters  112,   233107 (2018). [通讯作者]

[25] Xiao Cui,  Tao Ouyang*, Jin Li, Chaoyu He, Chao Tang, and Jianxin Zhong, Enhancing the thermoelectric performance of gamma-graphyne nanoribbons by introducing edge disorder, Physical Chemistry Chemical Physics 20, 7173 (2018). [通讯作者]

 

荣誉奖励

[1]     2017年 指导硕士生 曹威获 研究生国家奖学金

[2]     2019年 指导硕士生 姜恩来 获研究生国家奖学金

[3]     2021年 指导博士生 张培 获伟人之托奖学金

[4]     2022年 指导硕士生 李晗清 获研究生国家奖学金

[5]     2022年 指导硕士生 崔春凤 获伟人之托奖学金

[6]     2023年 指导博士生 张宇文 获伟人之托奖学金


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