材料科学
钙钛矿(结构)
圆二色性
卤化物
圆极化
手性(物理)
电致发光
光电子学
密度泛函理论
二极管
实现(概率)
纳米棒
发光二极管
吸收(声学)
各向异性
磁圆二色性
量子效率
化学物理
光子学
碘化物
二色性
失真(音乐)
反铁电性
线性二色性
结晶学
分子物理学
光化学
振动圆二色性
发色团
吸收光谱法
作者
Yong‐Jun Choi,Hengquan Guo,Jongmin Han,Jungho Han,Min Hyeong Lee,Won‐Woo Park,D. S. Kim,Jongbeom Kim,Jinkyu Yang,Dongryeol Lee,Dongeun Kim,Oh‐Hoon Kwon,Young Chul Jun,Seung Geol Lee,Myoung Hoon Song
标识
DOI:10.1002/adfm.202525181
摘要
Abstract Chiral halide perovskites have emerged as promising materials for spin‐optoelectronic devices owing to their ability to emit circularly polarized light (CPL) through spin‐selective processes. However, the realization of high dissymmetry factors in perovskite‐based circularly polarized light‐emitting diodes (CP‐LEDs) remains challenging. Herein, CP‐LEDs based on quasi‐2D perovskites incorporating two types of chiral materials are demonstrated, which achieve high circular polarization. R‐/S‐methylbenzylammonium iodide (MBAI) is employed to construct quasi‐2D perovskite structures and R‐/S‐1,1′‐binaphthyl‐2,2′‐diyl hydrogen phosphate (BHP) to enhance chiral distortion. Enhanced CPL emission with higher dissymmetry factors is observed due to a synergistic effect of the matching handedness of MBAI and BHP. The enhanced circular dichroism in the absorption band of the n = 1 2D perovskite reveals the presence of chiral distortion, which leads to strong CPL emission. The results of density functional theory calculations and micro‐strain analysis are further supported by the observed chiral distortion of the inorganic perovskite lattice. Moreover, BHP effectively passivated the perovskite defects through its phosphate groups. The resulting CP‐LEDs exhibit an enhanced electroluminescence dissymmetry factor of 7.5 × 10 −2 and an external quantum efficiency of 6.9%, demonstrating their potential for practical application in chiro‐optoelectronics.
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