甲脒
钙钛矿(结构)
光致发光
量子阱
材料科学
量子产额
吸收(声学)
光电子学
铯
化学
结晶学
无机化学
光学
物理
荧光
复合材料
激光器
作者
Haihua Zhang,Chuang Wu,Wenbao Xu,Hongbing Fu
出处
期刊:Nano Letters
[American Chemical Society]
日期:2022-12-23
卷期号:23 (1): 252-258
被引量:7
标识
DOI:10.1021/acs.nanolett.2c04238
摘要
Quasi-2D perovskites are natural quantum well (QW) structures composed of insulating organic layers inserted between conducting [An-1PbnX3n+1]2- slabs. The presence of the bulky organic layer improves the stability but meanwhile sacrifices carrier transport performance. By utilizing two A-site cations of formamidinium (FA+) and cesium (Cs+), we synthesize unique compact-type quasi-2D perovskites CsPbBr3@FABr. Instead of the bulky organic cations, the FA+ cation was employed to work as interlayer "spacer", while the smaller Cs+ cation was chosen to occupy perovskite cages. Transient absorption reveals an energy transfer from small-n-value QWs to large-n-value QWs, enabling a photoluminescence quantum yield (PLQY) of 36.1%. After further promoting the formation of middle-n-value QWs, the homogeneous QW distribution provides a complete energy cascade to access more efficient energy transfer, leading to significant PLQY raise to 70.1%. We break the shackles to report the first case of compact-type quasi-2D perovskites, providing new guidelines for designing high-performance perovskite materials for optoelectronic devices.
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