Cox Tori, Gvozdetskyi Volodymyr, Bertolami Mark, Lee Shannon, Shipley Kristian, Lebedev Oleg I, Zaikina Julia V
Department of Chemistry, Iowa State University, Ames, Iowa, 50011, USA.
Ames Laboratory, US DOE, Iowa State University, Ames, Iowa, 50011, USA.
Angew Chem Int Ed Engl. 2021 Jan 4;60(1):415-423. doi: 10.1002/anie.202011120. Epub 2020 Oct 29.
The compositional screening of K-Zn-Sb ternary system aided by machine learning, rapid exploratory synthesis using KH salt-like precursor and in situ powder X-ray diffraction yielded a novel clathrate type XI K Zn Sb . This clathrate consists of a 3D Zn-Sb framework hosting K ions inside polyhedral cages, some of which are reminiscent of known clathrate types while others are unique to this structure type. The complex non-centrosymmetric structure in the tetragonal space group was solved by means of single crystal X-ray diffraction as a 6-component twin due to pseudocubic symmetry and further confirmed by high-resolution synchrotron powder X-ray diffraction and state-of-the-art scanning transmission electron microscopy. The electron-precise composition of this clathrate yields narrow-gap p-type semiconductor with extraordinarily low thermal conductivity due to displacement or "rattling" of K cations inside oversized cages and as well as to twinning, stacking faults and antiphase boundary defects.
借助机器学习对K-Zn-Sb三元体系进行成分筛选,使用类KH盐前驱体进行快速探索性合成并结合原位粉末X射线衍射,得到了一种新型笼型XI K Zn Sb。这种笼合物由一个三维Zn-Sb骨架组成,K离子容纳在多面体笼中,其中一些让人联想到已知的笼型结构,而其他一些则是这种结构类型所独有的。通过单晶X射线衍射,由于伪立方对称性,该四方空间群中的复杂非中心对称结构被解析为六分量孪晶,并通过高分辨率同步辐射粉末X射线衍射和最先进的扫描透射电子显微镜进一步证实。这种笼合物的电子精确组成产生了窄带隙p型半导体,由于K阳离子在超大笼内的位移或“晃动”以及孪晶、堆垛层错和反相边界缺陷,其热导率极低。