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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Supramolecular Polymorphism: Tunable Electronic Interactions within π?Conjugated Peptide Nanostructures Dictated by Primary Amino Acid Sequence
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Supramolecular Polymorphism: Tunable Electronic Interactions within π?Conjugated Peptide Nanostructures Dictated by Primary Amino Acid Sequence

机译:超分子多态性:由初级氨基酸序列决定的π?共轭肽纳米结构内的可调电子相互作用。

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摘要

We present a systematic study of the photophysical properties of one-dimensional electronically delocalized nanostructures assembled from π-conjugated subunits embedded within oligopeptide backbones. The nature of the excited states within these nanostructures is studied as a function of primary amino acid sequence utilizing steady-state and time-resolved spectroscopies, and their atomistic structure is probed by molecular simulation. Variations introduced into the amino acid side chains at specific residue locations along the molecular peptide backbone lead to pronounced changes in the observed photophysical behavior of the fibrillar structures (spanning H-like excitonic coupling and disordered excimeric coupling) that arise from subtle changes in the π-stacking within them. These results indicate that residue modificationin terms of relative size, solvation properties, and with respect to the distance from the central π-electron coreenables the ability to tune chromophore packing and the resulting photophysics of supramolecular assemblies of π-conjugated bioelectronic materials in a rational and systematic manner.
机译:我们目前对一维电子离域化纳米结构的光物理性质的系统研究,该结构由嵌入寡肽骨架内的π-共轭亚基组装而成。利用稳态和时间分辨光谱学研究了这些纳米结构内激发态的性质与一级氨基酸序列的关系,并通过分子模拟研究了它们的原子结构。沿分子肽主链在特定残基位置引入氨基酸侧链的变异会导致由π的细微变化引起的观察到的原纤维结构的光物理行为发生显着变化(跨度H型激子偶联和无序激子偶联)。 -在他们里面堆积。这些结果表明,根据相对大小,溶剂化性质以及相对于距中心π电子核的距离进行残基修饰,可以调节生色团的堆积能力以及π共轭生物电子材料的超分子组装体的光物理性质。以合理和系统的方式。

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