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Zheng Jian-Jun, Zhang Li-Ping. Monolayer Cu2X (X=S, Se): excellent thermoelectric material with low lattice thermal conductivity. Acta Physica Sinica,
2023, 0(0): 0-0.
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Liu Xiu-Cheng, Yang Zhi, Guo Hao, Chen Ying, Luo Xiang-Long, Chen Jian-Yong. Molecular dynamics simulation of thermal conductivity of diamond/epoxy resin composites. Acta Physica Sinica,
2023, 72(16): 168102.
doi: 10.7498/aps.72.20222270
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He Hui-Fang, Chen Zhi-Quan. Positron annihilation studied defects and their influence on thermal conductivity of chemically synthesized Bi2Te3 nanocrystal. Acta Physica Sinica,
2015, 64(20): 207804.
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Zheng Bo-Yu, Dong Hui-Long, Chen Fei-Fan. Characterization of thermal conductivity for GNR based on nonequilibrium molecular dynamics simulation combined with quantum correction. Acta Physica Sinica,
2014, 63(7): 076501.
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Zhang Cheng-Bin, Cheng Qi-Kun, Chen Yong-Ping. Molecular dynamics simulation on thermal conductivity of nanocomposites embedded with fractal structure. Acta Physica Sinica,
2014, 63(23): 236601.
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Li Jing, Feng Yan-Hui, Zhang Xin-Xin, Huang Cong-Liang, Yang Mu. Thermal conductivities of metallic nanowires with considering surface and grain boundary scattering. Acta Physica Sinica,
2013, 62(18): 186501.
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Huang Cong-Liang, Feng Yan-Hui, Zhang Xin-Xin, Li Jing, Wang Ge, Chou Ai-Hui. Thermal conductivity of metallic nanoparticle. Acta Physica Sinica,
2013, 62(2): 026501.
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Yang Ping, Wang Xiao-Liang, Li Pei, Wang Huang, Zhang Li-Qiang, Xie Fang-Wei. The effect of doped nitrogen and vacancy on thermal conductivity of graphenenanoribbon from nonequilibrium molecular dynamics. Acta Physica Sinica,
2012, 61(7): 076501.
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Cao Bing-Yang, Dong Ruo-Yu, Kong Jie, Chen Heng, Xu Yan, Yung Kai-Leung, Cai An. Experimental study of thermal conductivity of polyethylene nanowire arrays fabricated by the nanoporous template wetting technique. Acta Physica Sinica,
2012, 61(4): 046501.
doi: 10.7498/aps.61.046501
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Huang Cong-Liang, Feng Yan-Hui, Zhang Xin-Xin, Li Wei, Yang Mu, Li Jing, Wang Ge. Thermal conductivity measurements on PANI/SBA-15 and PPy/SBA-15. Acta Physica Sinica,
2012, 61(15): 154402.
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Li Wei, Feng Yan-Hui, Chen Yang, Zhang Xin-Xin. Research on the influences of point defects on the thermal conductivity of carbon nanotube by simulation with orthogonal array testing strategy. Acta Physica Sinica,
2012, 61(13): 136102.
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Yang Ping, Wu Yong-Sheng, Xu Hai-Feng, Xu Xian-Xin, Zhang Li-Qiang, Li Pei. Molecular dynamics simulation of thermal conductivity for the TiO2/ZnO nano-film interface. Acta Physica Sinica,
2011, 60(6): 066601.
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Hou Quan-Wen, Cao Bing-Yang, Guo Zeng-Yuan. Thermal conductivity of carbon nanotube: From ballistic to diffusive transport. Acta Physica Sinica,
2009, 58(11): 7809-7814.
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Sun Jian-Ping, Weng Jia-Bao, Huang Xiao-Zhu, Ma Lin-Pu. In-situ polymerization and properties of poly (2,5-dibutyloxy-1,4-phenylene vinylene)/multi-walled carbon nanotube composites. Acta Physica Sinica,
2009, 58(9): 6523-6529.
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Wang Zhao-Liang, Liang Jin-Guo, Tang Da-Wei, Y. T. Zhu. Experimental and theoretical study of the length-dependent thermal conductivity of individual single-walled carbon nanotubes. Acta Physica Sinica,
2008, 57(6): 3391-3396.
doi: 10.7498/aps.57.3391
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Wang Zhao-Liang, Tang Da-Wei, Jia Tao, Mao An-Min. Analytical solution for temperature oscillation in the heater/thermometer film in 3ω method and its application to thermal conductivity measurement of micro/nanometer-films. Acta Physica Sinica,
2007, 56(2): 747-754.
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Wu Guo-Qiang, Kong Xian-Ren, Sun Zhao-Wei, Wang Ya-Hui. Molecular dynamics simulation on the out-of plane thermal conductivity of argon crystal thin films. Acta Physica Sinica,
2006, 55(1): 1-5.
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Luo Pai-Feng, Tang Xin-Feng, Xiong Cong, Zhang Qing-Jie. Effect of multiwalled carbon nanotubes on the thermoelectric properties of p-type Ba0.3FeCo3Sb12 compounds. Acta Physica Sinica,
2005, 54(5): 2403-2408.
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Song Jiao-Hua, Zhang Geng-Min, Zhang Zhao-Xiang, Sun Ming-Yan, Xue Zeng-Quan. A study of field emission of an array of multi-walled carbon nanotubes*. Acta Physica Sinica,
2004, 53(12): 4392-4397.
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Feng Ping, Wang Tai-Hong. 3ω method and its applications in nanomaterials and nanodevices. Acta Physica Sinica,
2003, 52(9): 2249-2253.
doi: 10.7498/aps.52.2249
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