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Critical Role of Organic Spacers for Bright 2D Layered Perovskites Light‐Emitting Diodes

机译:有机间隔物对明亮的二维层状钙钛矿发光二极管的关键作用

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摘要

Light‐emitting diodes (LEDs) made with quasi‐2D/3D and layered perovskites have undergone an unprecedented surge as their external quantum efficiency (EQE) is rapidly approaching other lighting technologies. Manipulating the charge recombination pathway in semiconductors is highly desirable for improving the device performance. This study reports high‐performance layered perovskites LEDs with benzyl ring as spacer where radiative recombination lifetime is longer, compared with much shorter alkyl chain spacer yields. Based on detailed optical and X‐ray absorption spectroscopy measurements, direct signature of charges localization is observed near the band edge in exchange with the shallow traps in benzyl organics containing layered perovskites. As a result, it boosts the photoluminescence intensity by 7.4 times compared to that made with the alkyl organics. As a demonstration, a bright LED made with the benzyl organics with current efficiency of 23.46 ± 1.52 cd A is shown when the device emits at a high brightness of 6.6 ± 0.93 × 104 cd m . The average EQE is 9.2% ± 1.43%, two orders of magnitude higher than the device made with alkyl organics. The study suggests that the choices of organic spacers provide a path toward the manipulation of charge recombination, essential for efficient optoelectronic device fabrications.
机译:准2D / 3D和层状钙钛矿制成的发光二极管(LED)经历了空前的激增,因为其外部量子效率(EQE)正迅速接近其他照明技术。为了改善器件性能,非常需要操纵半导体中的电荷复合途径。这项研究报告了以苄环为间隔基的高性能层状钙钛矿LED,其辐射复合寿命更长,而烷基链间隔基的产率要短得多。根据详细的光学和X射线吸收光谱测量,在带状边缘附近观察到电荷局部化的直接特征,这是与含有层状钙钛矿的苄基有机物中的浅陷阱交换的结果。结果,与烷基有机物相比,它的光致发光强度提高了7.4倍。作为演示,当设备以6.6±0.93×104 cd m的高亮度发光时,显示了由苄基有机物制成的明亮LED,电流效率为23.46±1.52 cdA。平均EQE为9.2%±1.43%,比用烷基有机物制成的器件高两个数量级。研究表明,有机间隔物的选择为电荷复合的操纵提供了一条途径,这对于有效的光电器件制造至关重要。

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