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Effect of energy transfer on the optical properties of surface-passivated perovskite films with CdSe/ZnS quantum dots

机译:能量转移对CDSE / ZNS量子点的表面钝化钙钛矿膜的光学性质

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Surface passivation is an effective method to protect the surfaces and improve the luminescence properties of perovskite (PS) films. CdSe/ZnS core-shell quantum dots (QDs) have been employed for surface passivation of PS films because of their size-dependent tunable bandgaps. Herein, the energy transfer (ET) behavior of CHsub3/subNHsub3/subPbIsub2/subBr PS films covered with CdSe/ZnS QDs (QD/PS hybrid structures) is characterized by using photoluminescence (PL) and time-resolved PL spectroscopy. The PL decay time and the integrated PL intensity of the QD/PS hybrid structure increase compared with those of the bare PS films, owing to ET from the QDs to the PS and reduced charge traps. The ET efficiency increases from ~7% to 63% for the QD/PS hybrid structure when the core diameter of the QDs decreases from 6.5 to 2.7?nm, respectively. This can be explained by the charge transfer rate enhancement due to the control of energy level alignment of QDs. These results allow us to understand fundamental mechanisms such as ET from QDs to PS films as a function of the size of the QD.
机译:表面钝化是保护表面的有效方法,并改善钙钛矿(PS)膜的发光性能。 CDSE / ZnS核心 - 壳量子点(QDS)已经用于PS膜的表面钝化,因为它们的尺寸依赖于可调谐带隙。这里,CH 3 nh 3 pbi 2 br ps膜的能量转移(et)行为(qd / ps杂化结构的特征在于使用光致发光(PL)和时间分辨的PL光谱。与裸PS薄膜相比,PL衰减时间和QD / PS混合结构的集成PL强度增加,由于QDS到PS和降低的电荷陷阱。当QD的核心直径分别从6.5降至2.7纳米时,ET效率从QD / PS混合结构的〜7%增加到6%至63%。这可以通过控制QD的能量水平对准引起的电荷传输速率增强来解释。这些结果允许我们了解基本机制,例如QDS到PS电影,作为QD大小的函数。

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