材料科学
圆极化
对映体
发光二极管
量子效率
圆二色性
各向异性
钙钛矿(结构)
极化(电化学)
手性(物理)
光电子学
二极管
分子
光学
结晶学
物理
物理化学
立体化学
手征微扰理论
化学
Nambu–Jona Lasinio模型
量子力学
粒子物理学
微带线
π介子
作者
Adva Shpatz Dayan,Avi Schneider,Doron Azulay,Yossi Paltiel,Lioz Etgar
标识
DOI:10.1002/adom.202401205
摘要
Abstract Chiral 2D perovskites synthesized using (R‐+)‐α‐Methylbenzylamine (R‐MBA) and (S–)‐α‐Methylbenzylamine (S‐MBA) as barrier molecules exhibit chirality at low n values, as confirmed by circular dichroism (CD) analysis. The Anisotropy factor decreases significantly with increasing the n value, reaching 0.0032 for pure 2D perovskite. These synthesized quasi‐2D chiral perovskites have been successfully integrated into light‐emitting diodes (LEDs), demonstrating polarized emission for the first time. Remarkably, n = 3, R enantiomer achieves a total external quantum efficiency (EQE) of 12.1%, with polarized EQE of 4%. In the case of n = 2, the total EQE for both enantiomers is 4.3%, with polarized EQE of 3.4%, higher than the non‐polarized EQE of 0.9%. Degree of Polarization (DOP) is employed to characterize the fraction of an electromagnetic wave that exhibits polarization. The DOP analysis reveals a significant increase for low dimensional perovskite. Particularly for n = 2, R enantiomer exhibits a DOP of 53% compared to 2.5% for the non‐chiral molecule BzA. These findings demonstrate efficient polarized emission in 2D chiral perovskite LEDs, indicating promising avenues for advanced optical device applications.
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