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首页> 外文期刊>ACS nano >Fabrication of Supramolecular n/p-Nanowires via Coassembly of Oppositely Charged Peptide-Chromophore Systems in Aqueous Media
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Fabrication of Supramolecular n/p-Nanowires via Coassembly of Oppositely Charged Peptide-Chromophore Systems in Aqueous Media

机译:在含水介质中通过相互带电的肽 - 发色体体系制备超分子N / P纳米线

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Fabrication of supramolecular electroactive materials at the nanoscale with well-defined size, shape, composition, and organization in aqueous medium is a current challenge. Herein we report construction of supramolecular charge-transfer complex one-dimensional (1D) nanowires consisting of highly ordered mixed-stack pi-electron donor-acceptor (D-A) domains. We synthesized n-type and p-type beta-sheet forming short peptide-chromophore conjugates, which assemble separately into well-ordered nanofibers in aqueous media. These complementary p-type and n-type nanofibers coassemble via hydrogen bonding, charge-transfer complex, and electrostatic interactions to generate highly uniform supramolecular n/p-coassembled 1D nanowires. This molecular design ensures highly ordered arrangement of D-A stacks within n/p-coassembled supramolecular nanowires. The supramolecular n/p-coassembled nanowires were found to be formed by A D-A unit cells having an association constant (K-A) of 5.18 x 10(5) M-1. In addition, electrical measurements revealed that supramolecular n/p-coassembled nanowires are approximately 2400 and 10 times more conductive than individual n-type and p-type nanofibers, respectively. This facile strategy allows fabrication of well-defined supramolecular electroactive nanomaterials in aqueous media, which can find a variety of applications in optoelectronics, photovoltaics, organic chromophore arrays, and bioelectronics.
机译:在纳米级尺寸尺寸,形状,组合物和含水介质中的组织中制备超分子电活性物质的制备是目前的攻击。在本文中,我们报告了由高度有序的混合堆叠Pi-Elector-Antiveor(D-A)结构域组成的超分子电荷转移型一维(1D)纳米线的构建。我们合成N型和P型β-片材形成短肽 - 发色团缀合物,其在含水介质中分别分别组装成良好的纳米纤维。这些互补的p型和n型纳米纤维通过氢键合,电荷转移复合物和静电相互作用,以产生高度均匀的超分子N / p耦合的1D纳米线。该分子设计确保了在N / P耦合的超分子纳米线内的D-A堆叠的高度有序排列。发现超分子N / p配套纳米线由D-A单元电池形成,该单元电池具有5.18×10(5)m-1的恒定常数(K-A)。另外,电测量显示,超分子N / P型纳米线分别比单个N型和P型纳米纤维分别为约2400和10倍。该容易策略允许在水性介质中制造含有明确的超分子电活性纳米材料,其可以在光电子,光伏,有机发色团阵列和生物电体中找到各种应用。

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