Probing the Lower Limit of Lattice Thermal Conductivity in an Ordered Extended Solid: Gd117Co56Sn112, a Phonon Glass–Electron Crystal System
收藏Figshare2016-02-21 更新2026-04-29 收录
下载链接:
https://figshare.com/articles/dataset/Probing_the_Lower_Limit_of_Lattice_Thermal_Conductivity_in_an_Ordered_Extended_Solid_Gd_sub_117_sub_Co_sub_56_sub_Sn_sub_112_sub_a_Phonon_Glass_Electron_Crystal_System/2535094
下载链接
链接失效反馈官方服务:
资源简介:
The discovery of novel materials with low thermal conductivity is paramount to improving the efficiency of thermoelectric devices. As lattice thermal conductivity is inversely linked to unit cell complexity, we set out to synthesize a highly complex crystalline material with glasslike thermal conductivity. Here we present the structure, transport properties, heat capacity, and magnetization of single-crystal Gd117Co56Sn112, a complex material with a primitive unit cell volume of ∼6858 Å3 and ∼285 atoms per primitive unit cell (1140 atoms per face-centered cubic unit cell). The room temperature lattice thermal conductivity of this material is κL = 0.28 W/(m·K) and represents one of the lowest ever reported for a nonglassy or nonionically conducting bulk solid. Furthermore, this material exhibits low resistivity at room temperature, and thus represents a true physical system that approaches the ideal phonon glass–electron crystal.
创建时间:
2016-02-21



