X射线吸收光谱法
六角相
结晶学
材料科学
钐
低能电子衍射
退火(玻璃)
氧化物
电子衍射
相(物质)
从头算
六方晶系
过渡金属
相变
吸收光谱法
衍射
催化作用
化学
无机化学
凝聚态物理
光学
冶金
有机化学
物理
生物化学
作者
Emilia Pożarowska,Linus Pleines,Moritz Ewert,Maurício J. Prieto,Liviu C. Tănase,Lucas de Souza Caldas,Aarti Tiwari,Thomas Schmidt,J. Falta,E. E. Krasovskii,Carlos Morales,Jan Ingo Flege
标识
DOI:10.1016/j.ultramic.2023.113755
摘要
We have used low-energy electron microscopy (LEEM), micro-illumination low-energy electron diffraction (µLEED) supported by ab initio calculations, and X-ray absorption spectroscopy (XAS) to investigate in-situ and in real-time the structural properties of Sm2O3 deposits grown on Ru(0001), a rare-earth metal oxide model catalyst. Our results show that samarium oxide grows in a hexagonal A-Sm2O3 phase on Ru(0001), exhibiting a (0001) oriented-top facet and (113) side facets. Upon annealing, a structural transition from the hexagonal to cubic phase occurs, in which the Sm cations exhibit the +3 oxidation state. The unexpected initial growth in the A-Sm2O3 hexagonal phase and its gradual transition to a mixture with cubic C-Sm2O3 showcases the complexity of the system and the critical role of the substrate in the stabilization of the hexagonal phase, which was previously reported only at high pressures and temperatures for bulk samaria. Besides, these results highlight the potential interactions that Sm could have with other catalytic compounds with respect to the here gathered insights on the preparation conditions and the specific compounds with which it interacts.
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