N-烷基侧链和π-核长度变化的肽-二酮吡咯并吡咯共轭物的水自组装

S. Panda, J. Tovar
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引用次数: 2

摘要

摘要肽序列与π-电子基团结合形成π-电子通路的自组装网络。由于其水性加工性和兼容性,这些材料有望用于生物界面电荷传输应用。在这项工作中,我们在肽序列中加入了二酮吡咯并吡咯(DPP),这是一种用于有机电子应用的成熟π核。我们在DPP的两侧嵌入了不同数量的噻吩环(2和3),以改变π-核的长度。我们还改变了连接到DPP核心的N-烷基侧链(甲基、丁基、己基)的长度。这些变化使我们能够明确研究π-核和N-烷基侧链长度对所得纳米材料光物理性质和形态的影响。所有这些分子在组装状态下形成H型聚集体。较长的π-核具有相对红移的吸收最大值,而N-烷基的变化没有表现出显著的光物理变化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Aqueous Self-Assembly of Peptide–Diketopyrrolopyrrole Conjugates with Variation of N-Alkyl Side Chain and π-Core Lengths
Abstract Peptidic sequences when conjugated to π-electronic groups form self-assembled networks of π-electron pathways. These materials hold promise for bio-interfacing charge transporting applications because of their aqueous processability and compatibility. In this work, we incorporated diketopyrrolopyrrole (DPP), a well-established π-core for organic electronic applications, within the peptidic sequence. We embedded different numbers of thiophene rings (2 and 3) on both sides of the DPP to alter the length of the π-cores. We also varied the length of the N-alkyl side chains (methyl, butyl, hexyl) attached to the DPP core. These variations allowed us to explicitly study the effect of π-core and N-alkyl side-chain length on photophysical properties and morphology of the resulting nanomaterials. All of these molecules formed H-type aggregates in the assembled state. Longer π-cores have relatively red-shifted absorption maxima, whereas the N-alkyl variation did not present significant photophysical changes.
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来源期刊
CiteScore
3.70
自引率
0.00%
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