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首页> 外文期刊>Molecular Systems Design & Engineering >Exploiting the interplay of quantum interference and backbone rigidity on electronic transport in peptides: a step towards bio-inspired quantum interferometers
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Exploiting the interplay of quantum interference and backbone rigidity on electronic transport in peptides: a step towards bio-inspired quantum interferometers

机译:利用量子干涉的相互作用和电子传输骨干刚度肽:一步仿生学研究量子干涉仪

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Electron transfer in peptides provides an opportunity to mimic nature for applications in bio-inspired molecular electronics. However, quantum interference effects, which become significant at the molecular level, have yet to be addressed in this context. Electrochemical and theoretical studies are reported on a series of cyclic and linear peptides of both β-strand and helical conformation, to address this shortfall and further realize the potential of peptides in molecular electronics. The introduction of a side-bridge into the peptides provides both additional rigidity to the backbone, and an alternative pathway for electron transport. Electronic transport studies reveal an interplay between quantum interference and vibrational fluctuations. We utilize these findings to demonstrate two distinctive peptide-based quantum interferometers, one exploiting the tunable effects of quantum interference (β-strand) and the other regulating the interplay between the two phenomena (3_(10)-helix).
机译:在肽提供了一个电子转移应用模拟大自然的机会仿生分子电子学。量子干涉效应,成为重要的在分子水平上,还没有在这种背景下加以解决。在一系列的理论研究循环和线性肽的β链螺旋构象,为了解决这个缺口并进一步实现肽的潜力分子电子学。side-bridge肽提供了额外的刚性骨架,和一个替代电子传递途径。电子交通研究揭示出一个相互作用量子干涉和振动之间的关系波动。演示两个独特的肽链型量子干涉仪,利用可调量子干涉效应(β链)其他调节之间的相互作用两种现象(3 _(10)螺旋)。

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  • 1. quantum electronics [P] . 外国专利: KR102288974B1 . 2021-08-12

    机译:Quantum Electronics.

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