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Improving Stability of Cesium Lead Iodide Perovskite Nanocrystals by Solution Surface Treatments

机译:溶液表面处理改善铯铅碘化铯铅钙钛矿纳米晶体的稳定性

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Cesium lead halide perovskite nanocrystals have a narrow emission peak tunable in the visible wavelength range with a high quantum yield. They hold great potential for optoelectronic applications such as light-emitting diodes or electronic displays. However, cesium lead iodide (CsPbI_(3)) is not stable under ambient conditions, limiting its applications. Here, we use a solution surface treatment approach to improve the photostability of CsPbI_(3) suspensions in toluene. When a CsPbBr_(3) precursor is used via the method of heterogeneous surface treatment, the photoluminescence (PL) intensity is enhanced but the PL only lasts 2 days. In contrast, when a CsPbI_(3) precursor is used via the method of homogeneous surface treatment, not only the PL intensity of CsPbI_(3) suspensions is enhanced but also the stability with the PL lasts for 11 days. It is likely that a better protection on the core CsPbI_(3) by itself can be achieved because of better matching of the material structure and surface chemistry.
机译:铯铅卤化铯钙钛矿纳米晶体在可见波长范围内具有高量子产率的窄发射峰。它们对光电应用(如发光二极管或电子显示器)保持巨大潜力。然而,铯铅碘化物(CSPBI_(3))在环境条件下不稳定,限制其应用。在此,我们使用溶液表面处理方法来改善CSPBI_(3)悬浮液在甲苯中的光稳定性。当通过异质表面处理方法使用CSPBBR_(3)前体时,增强光致发光(PL)强度,但PL仅持续2天。相反,当通过均匀表面处理的方法使用CSPBi_(3)前体时,不仅增加了CSPBI_(3)悬浮液的PL强度,而且PL的稳定性持续11天。由于材料结构和表面化学更好地匹配,可以实现对核心CSPBI_(3)的更好的保护。

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