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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Photoinduced electron transfer in thin layers composed of fullerene-cyclic peptide conjugate and pyrene derivative
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Photoinduced electron transfer in thin layers composed of fullerene-cyclic peptide conjugate and pyrene derivative

机译:富勒烯环肽共轭物和pyr衍生物组成的薄层中的光诱导电子转移

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摘要

A bilayer structure was constructed on gold by Langmuir-Blodgett deposition of a fullerene (C-60)-cyclic peptide-poly(ethylene glycol) (PEG) conjugate and thereafter a pyrene derivative from the air/water interface. The cyclic peptide moiety acts as a scaffold to prevent the fullerenes from self-aggregation and accordingly makes the monolayer homogeneous and stable. In addition to gold/C-60-cyclic peptide-PEG/pyrene bilayer, a pyrene monolayer, a gold/C-60-cyclic PEG conjugate/pyrene bilayer (lacking the peptide scaffold), and a gold/pyrene/C-60-cyclic peptide-PEG bilayer (with the opposite order of layers) were also prepared, and their anodic photocurrent generation were studied in an aqueous solution containing a sacrifice electron donor. The most efficient photocurrent generation was observed in the gold/C-60-cyclic peptide-PEG/pyrene bilayer. It is considered that the C-60 unit acts not only as sensitizer but also as an electron acceptor facilitating the electron transfer from the excited pyrene unit to gold, and that the fullerene layer suppresses quenching of the excited pyrene unit by energy transfer to gold. Furthermore, the cyclic peptide scaffold helps the fullerenes disperse without aggregation in the membrane and seems to protect their redox properties or inhibit self-quenching of their excited state. It is thus concluded that a bilayer structure with desired orientation of functional units is important for efficient photoinduced electron transfer and that a cyclic peptide scaffold is useful to locate hydrophobic functional groups properly in a thin layer.
机译:通过在富勒烯(C-60)-环肽-聚(乙二醇)(PEG)共轭物和随后的空气/水界面上的a衍生物进行Langmuir-Blodgett沉积在金上构建双层结构。环状肽部分充当支架以防止富勒烯自聚集,并因此使单层均匀且稳定。除了金/ C-60-环肽-PEG / py双层之外,a单层,金/ C-60-环PEG共轭物/ py双层(缺少肽支架)和金/ py / C-60还制备了环肽-PEG双层膜(各层顺序相反),并在含有牺牲电子供体的水溶液中研究了它们的阳极光电流产生。在金/ C-60环肽-PEG / py双层中观察到最有效的光电流产生。认为C-60单元不仅充当敏化剂,而且充当电子受体,促进电子从激发的pyr单元转移到金,并且富勒烯层通过能量转移到金来抑制激发的unit单元的猝灭。此外,环状肽支架有助于富勒烯分散而不在膜中聚集,并且似乎可以保护其氧化还原特性或抑制其激发态的自猝灭。因此得出结论,具有所需功能单元取向的双层结构对于有效的光诱导电子转移是重要的,并且环状肽支架可用于将疏水性官能团适当地定位在薄层中。

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