钙钛矿(结构)
材料科学
相(物质)
金属
粒子(生态学)
化学工程
化学
结晶学
地质学
冶金
海洋学
有机化学
工程类
作者
Hyunmin Kim,Chaesung Lim,Ohhun Kwon,Jinkyung Oh,Matthew T. Curnan,Hu Young Jeong,Sihyuk Choi,Jeong Woo Han,Guntae Kim
标识
DOI:10.1038/s41467-021-26739-1
摘要
Abstract To significantly increase the amount of exsolved particles, the complete phase reconstruction from simple perovskite to Ruddlesden-Popper (R-P) perovskite is greatly desirable. However, a comprehensive understanding of key parameters affecting the phase reconstruction to R-P perovskite is still unexplored. Herein, we propose the Gibbs free energy for oxygen vacancy formation in Pr 0.5 (Ba/Sr) 0.5 TO 3- δ (T = Mn, Fe, Co, and Ni) as the important factor in determining the type of phase reconstruction. Furthermore, using in-situ temperature & environment-controlled X-ray diffraction measurements, we report the phase diagram and optimum ‘ x ’ range required for the complete phase reconstruction to R-P perovskite in Pr 0.5 Ba 0.5- x Sr x FeO 3- δ system. Among the Pr 0.5 Ba 0.5- x Sr x FeO 3- δ , (Pr 0.5 Ba 0.2 Sr 0.3 ) 2 FeO 4+ δ – Fe metal demonstrates the smallest size of exsolved Fe metal particles when the phase reconstruction occurs under reducing condition. The exsolved nano-Fe metal particles exhibit high particle density and are well-distributed on the perovskite surface, showing great catalytic activity in fuel cell and syngas production.
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