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Encapsulation of a zinc phthalocyanine derivative in self-assembled peptide nanofibers

机译:酞菁锌衍生物在自组装肽纳米纤维中的包封

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摘要

In this article, we demonstrate encapsulation of octakis(hexylthio) zinc phthalocyanine molecules by non-covalent supramolecular organization within self-assembled peptide nanofibers. Peptide nanofibers containing octakis(hexylthio) zinc phthalocyanine molecules were obtained via a straight-forward one-step self-assembly process under aqueous conditions. Nanofiber formation results in the encapsulation and organization of the phthalocyanine molecules, promoting ultrafast intermolecular energy transfer. The morphological, mechanical, spectroscopic and non-linear optical properties of phthalocyanine containing peptide nanofibers were characterized by TEM, SEM, oscillatory rheology, UV-Vis, fluorescence, ultrafast pump-probe and circular dichroism spectroscopy techniques. The ultrafast pump-probe experiments of octakis(hexylthio) zinc phthalocyanine molecules indicated pH controlled non-linear optical characteristics of the encapsulated molecules within self-assembled peptide nanofibers. This method can provide a versatile approach for bottom-up fabrication of supramolecular organic electronic devices. © 2012 The Royal Society of Chemistry.
机译:在本文中,我们证明了通过自组装肽纳米纤维中的非共价超分子组织对八(己硫基)锌酞菁分子的封装。通过简单的一步自组装法在水性条件下获得了含有八(己硫基)锌酞菁锌分子的肽纳米纤维。纳米纤维的形成导致酞菁分子的包封和组织,从而促进了超快的分子间能量转移。通过TEM,SEM,振荡流变学,UV-Vis,荧光,超快泵浦探针和圆二色光谱技术表征了含酞菁的肽纳米纤维的形态,机械,光谱和非线性光学性质。八(己硫基)锌酞菁锌分子的超快泵浦探针实验表明,pH值控制了自组装肽纳米纤维内包封分子的非线性光学特性。该方法可以为自底向上制造超分子有机电子器件提供通用的方法。 ©2012皇家化学学会。

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