钙钛矿(结构)
材料科学
激光阈值
卤化物
共发射极
光探测
光电子学
光子
纳米技术
超辐射
量子
工程物理
激光器
物理
光学
化学
波长
无机化学
量子力学
光电探测器
结晶学
作者
Minjun Feng,Tze Chien Sum
标识
DOI:10.1002/adma.202413836
摘要
Abstract Halide perovskite emitters are a groundbreaking class of optoelectronic materials possessing remarkable photophysical properties for diverse applications. In perovskite light emitting devices, they have achieved external quantum efficiencies exceeding 28%, showcasing their potential for next‐generation solid‐state lighting and ultra high definition displays. Furthermore, the demonstration of room temperature continuous‐wave perovskite lasing underscores their potential for integrated optoelectronics. Of late, perovskite emitters are also found to exhibit desirable single‐photon emission characteristics as well as superfluorescence or superradiance phenomena for quantum optics. With progressive advances in synthesis, surface engineering, and encapsulation, halide perovskite emitters are poised to become key components in quantum optical technologies. Understanding the underpinning photophysical mechanisms is crucial for engineering these novel emergent quantum materials. This review aims to provide a condensed overview of the current state of halide perovskite emitter research covering both established and fledging applications, distill the underlying mechanisms, and offer insights into future directions for this rapidly evolving field.
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