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Perovskite hetero-anionic-sublattice interfaces for optoelectronics and nonconventional electronics

机译:钙钛矿hetero-anionic-sublattice接口光电子学和非传统电子产品

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The perovskite structure provides a versatile framework for functional materials and their high-quality heteroepitaxial interfaces. Perovskite halides (PH) have attracted intense interest for their application in optoelectronics. Oxides are another major class of perovskites that are widely used in fuel cells, nonconventional electronics and electrochemistry. Interfacing different perovskite oxides (POs) has led to a multitude of fascinating discoveries. By introducing anionic degree of freedom, we expect that perovskite hetero-anionic-sublattice interfaces can provide a new platform for emergent phenomena that may or may not have homo-oxygen-sublattice interface analogues. In this work, we investigate the interfaces between the all-inorganic PH CsPbBr3, the emerging double perovskite halide (dPH) Cs2TiBr6 and various common POs. Based on the band alignment properties, these POs are considered to be suitable carrier transport materials (CTMs) for CsPbBr3 and Cs2TiBr6 in either light-harvesting or light-emitting devices. In addition, these perovskite hetero-anionic-sublattice interfaces are found to be defect- and dangling bond-free due to compatible crystal lattices, making POs potentially outperform conventional binary transition-metal-oxide and organic CTMs. Besides optoelectronics, the potential of perovskite hetero-anionic-sublattice interfaces for nonconventional electronics is also explored. As examples, two-dimensionally confined electron-hole systems are predicted at the asymmetric interfaces in both Cs2TiBr6:LaAlO3 and CsPbBr3:LaAlO3 superlattice structures. This finding, along with the optically active properties of PHs, may spark novel applications of light-electron interaction in perovskite systems. This work presents new opportunities for perovskite heteroepitaxial interfaces.
机译:钙钛矿结构提供了一个通用的功能材料及其框架高质量的异质外延接口。钙钛矿卤化物(PH)吸引了激烈对他们的应用程序光电子学。广泛应用于钙钛矿的燃料细胞,非传统电子和电化学。钙钛矿氧化物(POs)导致了许多有趣的发现。钙钛矿的自由度,我们期望hetero-anionic-sublattice接口可以提供一个新的平台可能或紧急现象可能没有homo-oxygen-sublattice接口类似物。all-inorganic PH CsPbBr3之间的接口,新兴的双钙钛矿卤(衰变时)Cs2TiBr6和各种常见的POs。基于乐队对齐属性,这些POs被认为是合适的航空运输材料(ctm) CsPbBr3 Cs2TiBr6聚光或发光设备。hetero-anionic-sublattice接口被发现是缺陷,悬空bond-free由于兼容的晶格,使POs可能比传统的二进制transition-metal-oxide和有机全电脑化。光电子学,钙钛矿的潜力hetero-anionic-sublattice接口非传统电子也探索。例子,二维承压间系统预测的不对称的接口在Cs2TiBr6: LaAlO3和CsPbBr3: LaAlO3超晶格结构。发现,随着旋光性小灵通的性质,可能引发新颖应用钙钛矿的light-electron交互系统。钙钛矿异质外延接口。

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