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Lattice Thermal Transport in the Homogeneous Cage-Like Compounds Cu3VSe4 and Cu3NbSe4: Interplay between Phonon-Phase Space,Anharmonicity, and Atomic Mass
Authors:Dr Dingfeng Yang  Junzhu Yang  Xuejun Quan  Bin Zhang  Guoyu Wang  Xu Lu  Xiaoyuan Zhou
Institution:1. College of Chemistry and Chemical Engineering, Chongqing University of Technology, Chongqing, 400054 P. R. of China;2. Analytical and Testing Center of Chongqing University, Chongqing, 401331 P. R. of China;3. Chongqing Institute of Green and Intelligent Technology, Chinese Academy of Sciences, Chongqing, 400714 P. R. China;4. College of Physics, Chongqing University, Chongqing, 401331 P. R. China
Abstract:Understanding the correlation between crystal structure and thermal conductivity in semiconductors is very important for designing heat-transport-related devices, such as high-performance thermoelectric materials and heat dissipation in micro-nano-scale devices. In this work, the lattice thermal conductivity (urn:x-wiley:14394235:media:cphc202100516:cphc202100516-math-0001 ) of the cage-like compounds Cu3VSe4 and Cu3NbSe4 was investigated by experimental measurements and first-principles calculations. The experimental urn:x-wiley:14394235:media:cphc202100516:cphc202100516-math-0002 of Cu3NbSe4 is approximately 25 % lower than that of Cu3VSe4 at 300 K. The relevant important physical parameters, including the sound velocity, heat capacity, weighted phonon phase space (W), and third-order force constants along with atomic mass were theoretically analyzed. It is found that W is the dominant parameter in determining the urn:x-wiley:14394235:media:cphc202100516:cphc202100516-math-0003 , and the other factors only play a minor role. The physical origin is the relatively “soft” lattice of Cu3NbSe4 with heavier atomic mass. This research provides deep insight into the correlation between the thermal conductivity and crystal structure and paves the way for discovering high-performance thermal management device and thermoelectric materials with intrinsically low urn:x-wiley:14394235:media:cphc202100516:cphc202100516-math-0004 .
Keywords:cage-like compounds  phonon-phase space  Grüneisen parameters  third-order force constant  lattice thermal conductivity
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