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Alternate Monolayers of CdSe Nanocrystals and Perylene Tetracarboxylate: Quantum Dot Hypersensitization for Dye-Sensitized Solar Cells

机译:CdSe纳米晶体和Per四羧酸交替单层:染料敏化太阳能电池的量子点超敏化。

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摘要

Mono- and multilayers from CdSe nanociystal dispersion and perylene tetracarboxylate solution are reported for the first time. The layers were investigated by UV-visible spectroscopy, cyclic voltammetry, photoconductivity, and photoelectrochemical techniques. The n-type organic semiconductor gives enhanced photoconductivity to the CdSe-NC multilayer structure. The photoactive perylene monolayer acts also as hypersensitizer of CdSe-NC structures. The perylene-modified CdSe-NC monolayer on indium tin oxide (ITO) electrode in a three-electrode photoelectrochemical cell upon illumination in the presence of oxygen generates an intense steady photocurrent as high as 10-20 times that expected from the individual contributions of perylene and CdSe-NCs. The hypersensitization mechanism is discussed on the basis of the energy level diagram of the components.
机译:首次报道了CdSe纳米纤维素分散体和per四羧酸盐溶液的单层和多层结构。通过UV-可见光谱,循环伏安法,光电导性和光电化学技术研究这些层。 n型有机半导体为CdSe-NC多层结构提供了增强的光电导性。光敏per单层还充当CdSe-NC结构的超敏剂。三电极光电化学电池中氧化铟锡(ITO)电极上经per的修饰的CdSe-NC单层在氧气存在下照射后产生的强稳定光电流高达current的单独贡献所预期的10-20倍和CdSe-NC。基于组件的能级图讨论超敏化机理。

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