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All-inorganic perovskite nanocrystal assisted extraction of hot electrons and biexcitons from photoexcited CdTe quantum dots

机译:All-inorganic钙钛矿晶体辅助提取的电子和双激子光激的CdTe量子点

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摘要

Excitation of semiconductor quantum dots (QDs) by photons possessing energy higher than the band-gap creates a hot electron-hole pair, which releases its excess energy as waste heat or under certain conditions (when h nu 2E(g)) produces multiple excitons. Extraction of these hot carriers and multiple excitons is one of the key strategies for enhancing the efficiency of QD-based photovoltaic devices. However, this is a difficult task as competing carrier cooling and relaxation of multiple excitons (through Auger recombination) are ultrafast processes. Herein, we study the potential of all-inorganic perovskite nanocrystals (NCs) of CsPbX3 (X = Cl, Br) as harvesters of these short-lived species from photo-excited CdTe QDs. The femtosecond transient absorption measurements show CsPbX3 mediated extraction of both hot and thermalized electrons of the QDs (under a low pump power) and (under a high pump fluence) extraction of multiple excitons prior to their Auger assisted recombination. A faster timescale of thermalized electron transfer (similar to 2 ps) and a higher extraction efficiency of hot electrons (similar to 60) are observed in the presence of CsPbBr3 . These observations demonstrate the potential of all-inorganic perovskite NCs in the extraction of these short-lived energy rich species implying that complexes of the QDs and perovskite NCs are better suited for improving the efficiency of QD-sensitized solar cells.
机译:激发半导体量子点(量子点)光子具有能量高于带隙产生电子空穴对,哪个释放多余的能量作为废热或下某些条件(hν祝辞产生多个激子。热运营商和多个激子是其中一个提高效率的关键策略QD-based光伏设备。艰巨的任务作为载体冷却和竞争放松的多个激子(通过钻重组)超快过程。我们研究all-inorganic的潜力钙钛矿纳米晶体(nc) CsPbX3 (X = Cl,Br)作为这些短暂的物种的矿车从量子点photo-excited CdTe。瞬态吸收测量显示CsPbX3介导提取热和热化量子点的电子(低泵浦功率下)(在高泵影响)提取多个激子前钻协助重组。电子转移(类似于2 ps)和更高提取效率的热电子(类似60%)是观察在CsPbBr3面前。这些观察演示的潜力all-inorganic钙钛矿nc的提取这些短暂的能源丰富的物种暗示量子点的复合物和钙钛矿nc更适合提高效率QD-sensitized太阳能电池。

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