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Solid-Phase Synthesis of Self-Assembling Multivalent π-Conjugated Peptides

机译:自组装多价π共轭肽的固相合成

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摘要

We present a completely solid-phase synthetic strategy to create three- and four-fold peptide-appended π-electron molecules, where the multivalent oligopeptide presentation is dictated by the symmetries of reactive handles placed on discotic π-conjugated cores. Carboxylic acid and anhydride groups were viable amidation and imidation partners, respectively, and oligomeric π-electron discotic cores were prepared through Pd-catalyzed cross-couplings. Due to intermolecular hydrogen bonding between the three or four peptide axes, these π-peptide hybrids self-assemble into robust one-dimensional nanostructures with high aspect ratios in aqueous solution. The preparation of these systems via solid-phase methods will be detailed along with their self-assembly properties, as revealed by steady-state spectroscopy and transmission electron microscopy and electrical characterization using field-effect transistor measurements.
机译:我们提出了一种完全固相合成的策略,以创建三倍和四倍肽附加的π电子分子,其中多价寡肽呈递是由放置在盘状π共轭核上的反应性手柄的对称性决定的。羧酸和酸酐基团分别是可行的酰胺化和酰亚胺化伙伴,并且通过Pd催化的交叉偶联制备了低聚π电子盘状核。由于三个或四个肽轴之间的分子间氢键,这些π肽杂化物在水溶液中自组装成具有高长宽比的坚固的一维纳米结构。这些系统通过固相方法的制备以及它们的自组装特性将得到详细描述,如稳态光谱学和透射电子显微镜以及使用场效应晶体管的电学表征所揭示的那样。

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