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三元铜-锑-硒化合物中的多种晶格动力学

Diverse lattice dynamics in ternary Cu-Sb-Se compounds.

作者信息

Qiu Wujie, Wu Lihua, Ke Xuezhi, Yang Jihui, Zhang Wenqing

机构信息

Institute of Theoretical Physics and Department of Physics, East China Normal University, Shanghai 200241, China.

State Key Laboratory of High Performance Ceramics and Superfine Microstructure, Shanghai Institute of Ceramics, Chinese Academy of Sciences, Shanghai 200050, China.

出版信息

Sci Rep. 2015 Sep 2;5:13643. doi: 10.1038/srep13643.

Abstract

Searching and designing materials with extremely low lattice thermal conductivity (LTC) has attracted considerable attention in material sciences. Here we systematically demonstrate the diverse lattice dynamics of the ternary Cu-Sb-Se compounds due to the different chemical-bond environments. For Cu3SbSe4 and CuSbSe2, the chemical bond strength is nearly equally distributed in crystalline bulk, and all the atoms are constrained to be around their equilibrium positions. Their thermal transport behaviors are well interpreted by the perturbative phonon-phonon interactions. While for Cu3SbSe3 with obvious chemical-bond hierarchy, one type of atoms is weakly bonded with surrounding atoms, which leads the structure to the part-crystalline state. The part-crystalline state makes a great contribution to the reduction of thermal conductivity that can only be effectively described by including a rattling-like scattering process in addition to the perturbative method. Current results may inspire new approaches to designing materials with low lattice thermal conductivities for high-performance thermoelectric conversion and thermal barrier coatings.

摘要

在材料科学领域,寻找和设计具有极低晶格热导率(LTC)的材料已引起了广泛关注。在此,我们系统地展示了由于不同化学键环境导致的三元Cu-Sb-Se化合物多样的晶格动力学。对于Cu3SbSe4和CuSbSe2,化学键强度在晶体块体中几乎均匀分布,所有原子都被限制在其平衡位置附近。它们的热输运行为可以通过微扰声子-声子相互作用得到很好的解释。而对于具有明显化学键层次结构的Cu3SbSe3,一种类型的原子与周围原子的键合较弱,这导致结构处于部分晶态。部分晶态对热导率的降低有很大贡献,这只能通过在微扰方法之外纳入类似摇铃散射过程来有效描述。当前的结果可能会激发新的方法来设计具有低晶格热导率的材料,用于高性能热电转换和热障涂层。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9c31/4572610/49de3d8cd158/srep13643-f1.jpg

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