陈元平
近期热点
资料介绍
个人简历
1991/09-1995/07,湖南师范大学物理系,大学/本科\r
1995/08-2001/08,湖南科技学院,助教、讲师\r
2001/09-2007/07,湘潭大学物理与光电工程学院,硕士、博士\r
2001/09-2012/11,湘潭大学物理与光电工程学院,讲师、副教授、博士生导师\r
2012/12-2018/08,湘潭大学物理与光电工程学院,教授、博士生导师\r
2018/09-今,江苏大学理学院学院物理系,教授,博士生导师\r
2012/09-2013/12,美国伦斯勒理工学院,访问学者\r
2016/11-2017/11,美国加州大学伯克利分校、罗格斯大学,访问学者
研究领域
""计算物理、凝聚态物理、人工智能、能源材料""""
近期论文
Symmorphic intersecting nodal rings in semiconducting layers, Phys. Rev. Lett. 120, 106403 (2018) \r
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A Class of topological nodal rings and its realization in carbon networks, Phys. Rev. B (Rapid Communication) 97, 121108 (2018)\r
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Predicting two-dimensional carbon phosphide compounds: C2P4 by the global optimization method, Comp. Mater. Sci. 144, 70 (2018)\r
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Nexus networks in carbon honeycombs, Phys. Rev. Mater. 2, 42051 (2018)\r
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Ferromagnetism and Wigner crystallization in kagome graphene and related structures, Phys. Rev. B 98, 035135(2018)\r
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Double Kagome bands in a two-dimensional phosphorus carbide P2C3, J. Phys. Chem. Lett. 9, 2751 (2018)\r
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Spindle nodal chain in three-dimensional alpha’ boron, Phys. Chem. Chem. Phys. 20, 23500 (2018)\r
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Nodal-chain network, intersecting nodal rings and triple points coexisting in nonsymmorphic Ba3Si4, Phys. Chem. Chem. Phys. 20, 21177 (2018)\r
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Three-dimensional Pentagon Carbon with a genesis of emergent fermions, Nature Comm. 8, 15641 (2017)\r
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Dirac Nodal Lines and Tilted Semi-Dirac Cones Coexisting in a Striped Boron Sheet, J. Phys. Chem. Lett. 8, 1707 (2017) \r
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Tunable Type-I and type-II Dirac fermions in graphene with nitrogen-molecule line defects, J. Phys. Chem. C 12122, 12476 (2017)\r
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Semi-Dirac Semimetal in Silicene Oxide, Phys. Chem. Chem. Phys. 19, 3820 (2017)\r
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A systematic investigation of thermal conductivities of transition metal dichalcogenides, International Journal of Heat and Mass Transfer 108,417 (2017) \r
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Electron and phonon properties and gas storage in carbon honeycomb, Nanoscale 8, 12863 (2016)\r
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Towards three-dimensional Weyl-surface semimetals in graphene networks, Nanoscale 8 (13), 7232 (2016) \r
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Coexistence of flat bands and Dirac bands in a carbon-Kagome-lattice family, Carbon 99, 65 (2016) \r
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A theoretical prediction of super high-performance thermoelectric materials based on MoS2/WS2 hybrid nanoribbons, Scientific reports, 21639 (2016) \r
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Phonon transport in single-layer boron nanoribbons, Nanotechnology 27, 445703 (2016)\r
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Transition of thermal rectification in silicon nanocones, Applied Thermal Engineering 102, 1075 (2016)\r
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New record of high ZT found in hybrid transition-metal-dichalcogenides, J Appl. Phys. 120, 235109 (2016)
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