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首页> 外文期刊>Nanoscale >Sequential structural degradation of red perovskite quantum dots and its prevention by introducing iodide at a stable gradient concentration into the core–shell red perovskite quantum dots
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Sequential structural degradation of red perovskite quantum dots and its prevention by introducing iodide at a stable gradient concentration into the core–shell red perovskite quantum dots

机译:顺序结构退化的红色钙钛矿量子点及其预防引入碘化在一个稳定的梯度浓度的核壳红色钙钛矿量子点

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摘要

Perovskite quantum dots (QDs) have been extensively studied as emissive materials for next-generation optoelectronics due to their outstanding optical properties; however, their structural instabilities, specifically those of red perovskite QDs, are critical obstacles in realizing operationally reliable perovskite QD-based optoelectronic devices. Accordingly, herein, we investigated the sequential degradation mechanism of red perovskite QDs upon their exposure to an electric field. Via electrical and chemical characterization, we demonstrated that degradation occurred in the following order: anion-defect-assisted halide migration, cation-defect-assisted migration of I−/Cs+ ions, defective gradient I ion distribution, structural distortion, and ion transport/I2 vaporization with defect proliferation. Among these steps, the defective gradient I ion distribution is the key process in the structural degradation of perovskite QDs. Based on our findings, we designed perovskite/SiO2 core–shell QDs with stable gradient I concentrations. Most notably, the operational stabilities of perovskite QD-light-emitting diodes (PeLEDs) fabricated using the perovskite/SiO2 core–shell QDs were approximately 5000 times those of the PeLEDs constructed using pristine perovskite QDs.
机译:钙钛矿量子点(量子点)广泛研究了发射材料由于他们的下一代光电子学优秀的光学特性;结构不稳定,特别是那些的红色量子点钙钛矿,是关键的障碍操作上实现可靠的钙钛矿QD-based光电设备。在此,我们调查了顺序降解机制的红色量子点钙钛矿他们的电场。电和化学特性,我们表明,退化的发生以下订单:anion-defect-assisted卤化物移民,cation-defect-assisted迁移我−/ Cs +离子,有缺陷的梯度离子分布、结构变形和离子运输/ I2蒸发与缺陷扩散。梯度我离子分布的关键过程量子点钙钛矿的结构退化。根据我们的研究,我们设计钙钛矿/二氧化硅核壳量子点与稳定我的浓度梯度。钙钛矿的操作稳定性QD-light-emitting二极管(PeLEDs)编造的使用钙钛矿/二氧化硅核壳量子点PeLEDs的大约5000倍使用原始量子点钙钛矿构造。

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