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Phototransport in networks of tetrapod-shaped colloidal semiconductor nanocrystals

机译:四足动物胶体半导体纳米晶体网络中的光转移

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Tetrapod-shaped CdSe(core)/CdTe(arms) colloidal nanocrystals, capped with alkylphosphonic acids or pyridine, were reacted with various small molecules (acetic acid, hydrazine and chlorosilane) which induced their tip-to-tip assembly into soluble networks. These networks were subsequently processed into films by drop casting and their photoconductive properties were studied. We observed that films prepared from tetrapods coated with phosphonic acids were not photoconductive, but tip-to-tip networks of the same tetrapods exhibited appreciable photocurrents. On the other hand, films prepared from tetrapods coated with pyridine instead of phosphonic acids were already highly photoconductive even if the nanocrystals were not joined tip-to-tip. Based on the current-voltage behavior under light we infer that the tunneling between tetrapods is the dominant charge transport mechanism. In all the samples, chemically-induced assembly into networks tended to reduce the average tunneling barrier. Additionally, pyridine-coated tetrapods and the tip-to-tip networks made out of them were tested as active materials in hybrid photovoltaic devices. Overall, we introduce an approach to chemically-induced tip-to-tip assembly of tetrapods into solution processable networks and demonstrate the enhancement of electronic coupling of tetrapods by various ligand exchange procedures.
机译:用烷基膦酸或吡啶限制的四足类CDSE(核)/CDTE(臂)胶体纳米晶体与各种小分子(乙酸,氢氮和氯硅烷)反应,这些分子将其尖端到尖端诱导到可溶性网络中。随后将这些网络通过滴铸件处理成薄膜,并研究了它们的光电传入性能。我们观察到,从涂有磷酸的四足动物制备的膜不是光电传导的,但是相同四足动物的尖端到尖端网络表现出明显的光电。另一方面,即使未连接纳米晶体,也已经具有高度光导能,从涂有吡啶而不是磷酸的四足动物制备的膜已经具有高度的光导能。根据光线下的电流 - 电压行为,我们推断四足动物之间的隧道是主要的电荷运输机制。在所有样品中,化学诱导的组装到网络中倾向于减少平均隧道屏障。此外,在混合光伏设备中,将吡啶涂层的四足动物和由它们制成的尖端网络进行了测试。总体而言,我们引入了一种将四足动物的化学诱导的尖端组装到溶液处理网络中的方法,并通过各种配体交换程序证明了四足动物的电子耦合的增强。

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