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化学压力对高压合成的岩盐型ZnO-LiMeO固溶体稳定性的影响

Chemical Pressure Effect on the Stabilization of Rock-Salt ZnO-LiMeO Solid Solutions Synthesized at High Pressure.

作者信息

Sokolov Petr S, Baranov Andrey N, Solozhenko Vladimir L

机构信息

LSPM-CNRS, Université Sorbonne Paris Nord, 93430 Villetaneuse, France.

Chemistry Department, Moscow State University, 119991 Moscow, Russia.

出版信息

Materials (Basel). 2023 Jul 29;16(15):5336. doi: 10.3390/ma16155336.

Abstract

Metastable ZnO-LiMeO (Me = Sc, Ti, Ta) solid solutions with a rock-salt structure were synthesized through the solid-state reaction of ZnO with LiMeO (n = 3, 4, 5) complex oxides at 7.7 GPa and 1300-1500 K. In all investigated systems, single-phase rock-salt solid solutions can be quenched down to ambient conditions in a wide (up to 80 mol% ZnO) concentration range. The phase composition, thermal stability, and thermal expansion of the recovered rock-salt solid solutions were studied by synchrotron powder X-ray diffraction. At ambient pressure, these solid solutions exhibit high thermal stability (up to 1000 K), with the decomposition temperature and decomposition products depending on the nature of the multiple charge cations.

摘要

通过在7.7 GPa和1300 - 1500 K条件下,使ZnO与LiMeO(n = 3、4、5)复合氧化物进行固态反应,合成了具有岩盐结构的亚稳ZnO - LiMeO(Me = Sc、Ti、Ta)固溶体。在所有研究的体系中,单相岩盐固溶体能够在宽浓度范围(高达80 mol% ZnO)内淬火至环境条件。通过同步辐射粉末X射线衍射研究了回收的岩盐固溶体的相组成、热稳定性和热膨胀。在常压下,这些固溶体表现出高热稳定性(高达1000 K),其分解温度和分解产物取决于多价阳离子的性质。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/afd6/10419647/4d2a5386e1e2/materials-16-05336-g001.jpg

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