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The first silicon-based cationic clathrate III with high thermal stability: Si172-xPxTey (x=2y, y > 20)

机译:第一个具有高热稳定性的硅基阳离子包合物III:Si172-xPxTey(x = 2y,y> 20)

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摘要

A new representative of a very rare clathrate III family, Si130P42Te21, has been synthesized from the elements. It crystallizes in the tetragonal space group P4(2)/mnm (no. 136) with the unit cell parameters a = 19.2632(3) angstrom, c = 10.0706(2) angstrom. Single crystal X-ray diffraction and solid state P-31 NMR revealed a non-random distribution of phosphorus atoms over the framework positions. The crystal structure features a peculiar packing of large polyhedra Te@(Si/P)(n) never observed before for cationic clathrates. Despite the structural complexity, the composition of the novel clathrate Is in accordance with the Zintl rule, which was confirmed by a combination of optical metallography, scanning electron microscopy (SEM) and wavelength dispersive X-ray spectroscopy (WDXS), as well as by diamagnetic and semiconducting behavior of the synthesized phase. Clathrate Si130P42Te21 exhibits the highest reported thermal stability for this class of materials, it decomposes at 1510 K. This opens new perspectives for the creation of clathrate-based materials for high-temperature applications.
机译:由这些元素合成了非常罕见的笼形III族的新代表Si130P42Te21。它在单位空间参数a = 19.2632(3)埃,c = 10.0706(2)埃的四边形空间群P4(2)/ mnm(编号136)中结晶。单晶X射线衍射和固态P-31 NMR揭示了骨架原子上磷原子的非随机分布。晶体结构的特征是大型的多面体Te @(Si / P)(n)的特殊堆积,这是阳离子包合物从未见过的。尽管结构复杂,新型包合物的组成仍符合Zintl规则,这已通过光学金相,扫描电子显微镜(SEM)和波长色散X射线光谱(WDXS)的结合得到了证实,并且通过合成相的抗磁和半导体行为。包合物Si130P42Te21在此类材料中显示出最高的热稳定性,在1510 K时分解。这为创建用于高温应用的包合物基材料开辟了新的前景。

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