Corey Zachary J, Lu Ping, Zhang Guangran, Sharma Yogesh, Rutherford Bethany X, Dhole Samyak, Roy Pinku, Wang Zhehui, Wu Yiquan, Wang Haiyan, Chen Aiping, Jia Quanxi
Department of Materials Design and Innovation, University at Buffalo, Buffalo, NY, 14260, USA.
Center for Integrated Nanotechnologies (CINT), Los Alamos National Laboratory, Los Alamos, NM, 87545, USA.
Adv Sci (Weinh). 2022 Oct;9(29):e2202671. doi: 10.1002/advs.202202671. Epub 2022 Aug 26.
Mixtures of Ce-doped rare-earth aluminum perovskites are drawing a significant amount of attention as potential scintillating devices. However, the synthesis of complex perovskite systems leads to many challenges. Designing the A-site cations with an equiatomic ratio allows for the stabilization of a single-crystal phase driven by an entropic regime. This work describes the synthesis of a highly epitaxial thin film of configurationally disordered rare-earth aluminum perovskite oxide (La Lu Y Gd Ce )AlO and characterizes the structural and optical properties. The thin films exhibit three equivalent epitaxial domains having an orthorhombic structure resulting from monoclinic distortion of the perovskite cubic cell. An excitation of 286.5 nm from Gd and energy transfer to Ce with 405 nm emission are observed, which represents the potential for high-energy conversion. These experimental results also offer the pathway to tunable optical properties of high-entropy rare-earth epitaxial perovskite films for a range of applications.
铈掺杂稀土铝钙钛矿混合物作为潜在的闪烁器件正受到广泛关注。然而,复杂钙钛矿体系的合成面临诸多挑战。设计具有等原子比的A位阳离子能够在熵驱动下稳定单晶相。本文描述了构型无序的稀土铝钙钛矿氧化物(La Lu Y Gd Ce)AlO的高度外延薄膜的合成,并对其结构和光学性质进行了表征。该薄膜呈现出三个具有正交结构的等效外延畴,这是由钙钛矿立方晶胞的单斜畸变导致的。观察到来自Gd的286.5nm激发以及向Ce的能量转移,发射波长为405nm,这代表了高能量转换的潜力。这些实验结果也为一系列应用中高熵稀土外延钙钛矿薄膜的可调光学性质提供了途径。