钙钛矿(结构)
光电子学
材料科学
光致发光
激子
纳米晶
发光二极管
半导体
光电探测器
量子点
光子
二极管
纳米技术
光学
物理
化学
量子力学
结晶学
作者
Zengle Cao,Fengrui Hu,Chunfeng Zhang,Shining Zhu,Min Xiao,Xiaoyong Wang
出处
期刊:Advanced photonics
[SPIE - International Society for Optical Engineering]
日期:2020-09-21
卷期号:2 (05)
被引量:47
标识
DOI:10.1117/1.ap.2.5.054001
摘要
Semiconductor perovskite films are now being widely investigated as light harvesters in solar cells with ever-increasing power conversion efficiencies, which have motivated the fabrication of other optoelectronic devices, such as light-emitting diodes, lasers, and photodetectors. Their superior material and optical properties are shared by the counterpart colloidal nanocrystals (NCs), with the additional advantage of quantum confinement that can yield size-dependent optical emission ranging from the near-UV to near-infrared wavelengths. So far, intensive research efforts have been devoted to the optical characterization of perovskite NC ensembles, revealing not only fundamental exciton relaxation and recombination dynamics but also low-threshold amplified spontaneous emission and novel superfluorescence effects. Meanwhile, the application of single-particle spectroscopy techniques to perovskite NCs has helped to resolve a variety of optical properties for which there are few equivalents in traditional colloidal NCs, mainly including nonblinking photoluminescence, suppressed spectral diffusion, stable exciton fine structures, and coherent single-photon emission. While the main purpose of ensemble optical studies is to guide the smooth development of perovskite NCs in classical optoelectronic applications, the rich observations from single-particle optical studies mark the emergence of a potential platform that can be exploited for quantum information technologies.
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