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在具有超低热导率的链状热电材料中对一维无序扩散通道的直接观测。

Direct observation of one-dimensional disordered diffusion channel in a chain-like thermoelectric with ultralow thermal conductivity.

作者信息

Zhang Jiawei, Roth Nikolaj, Tolborg Kasper, Takahashi Seiya, Song Lirong, Bondesgaard Martin, Nishibori Eiji, Iversen Bo B

机构信息

Center for Materials Crystallography, Department of Chemistry and iNANO, Aarhus University, DK-8000, Aarhus, Denmark.

Faculty of Pure and Applied Sciences and Tsukuba Research Center for Energy Materials Science (TREMS), University of Tsukuba, Tsukuba, 305-8571, Japan.

出版信息

Nat Commun. 2021 Nov 18;12(1):6709. doi: 10.1038/s41467-021-27007-y.

Abstract

Structural disorder, highly effective in reducing thermal conductivity, is important in technological applications such as thermal barrier coatings and thermoelectrics. In particular, interstitial, disordered, diffusive atoms are common in complex crystal structures with ultralow thermal conductivity, but are rarely found in simple crystalline solids. Combining single-crystal synchrotron X-ray diffraction, the maximum entropy method, diffuse scattering, and theoretical calculations, here we report the direct observation of one-dimensional disordered In chains in a simple chain-like thermoelectric InTe, which contains a significant In vacancy along with interstitial indium sites. Intriguingly, the disordered In chains undergo a static-dynamic transition with increasing temperature to form a one-dimensional diffusion channel, which is attributed to a low In-ion migration energy barrier along the c direction, a general feature in many other TlSe-type compounds. Our work provides a basis towards understanding ultralow thermal conductivity with weak temperature dependence in TlSe-type chain-like materials.

摘要

结构无序在诸如热障涂层和热电学等技术应用中很重要,因为它能有效降低热导率。特别是,间隙、无序、扩散的原子在具有超低热导率的复杂晶体结构中很常见,但在简单晶体固体中却很少见。结合单晶同步辐射X射线衍射、最大熵方法、漫散射和理论计算,我们在此报告了在一种简单的链状热电材料InTe中直接观察到一维无序的In链,该材料除了间隙铟位点外还含有大量In空位。有趣的是,无序的In链随着温度升高经历静态 - 动态转变,形成一维扩散通道,这归因于沿c方向较低的In离子迁移能垒,这是许多其他TlSe型化合物的一个普遍特征。我们的工作为理解TlSe型链状材料中具有弱温度依赖性的超低热导率提供了基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3a69/8602660/4b3959b90c23/41467_2021_27007_Fig1_HTML.jpg

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