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首页> 外文期刊>Journal of nanoscience and nanotechnology >Looking beyond carbon nanotubes: Polypeptide nanotubes as alternatives?
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Looking beyond carbon nanotubes: Polypeptide nanotubes as alternatives?

机译:超越碳纳米管:多肽纳米管可以替代吗?

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摘要

Since the discovery of CNT by Iijima, Nature 354, 56 (1991). CNT's have surged to the forefront as a versatile nanostructured material in nanoelectronic applications. Polypeptides nanotubular structures with tunable properties offer a challenging alternative to CNT Earlier experimental studies on L-Alanyl-L-Valine (AV) and L-Valyl-L-Alanine (VA) have demonstrated their potential as novel porous materials, which form channel-like structure (Soldatov et al., Angew. Chem. Int. Ed. 43, 6308 (2004)). In the study reported here, DFT calculations on two closely related cyclic dipeptides cyclo[L-alanyl-L-valine](3) and cyclo[L-valyl-L-alanine](3) and on their linear correlates, [L-alanyl-L-valine](3) and [L-valyl-L-alanine](3) have been performed. This paper presents the general structural and electronic properties of cyclic and linear correlates of the nanotubular oligomeric dipeptides constructs, AV, and VA. We have compared the energy gaps of these cyclic rings and their linear correlates with that of other nanotubular constructs. The calculated HOMO-LUMO gap of these isolated ring structures is significantly larger than CNT's. Further research is required to reduce the band gaps to be comparable to CNT's and other inorganic tubular structures. Polypeptide design promises to be a major tool in engineering desirable band gap for the creation of novel nanostructured polypeptide nanotubes.
机译:自Iijima在《自然》第354卷第56页(1991年)发现CNT以来。 CNT在纳米电子应用中作为一种通用的纳米结构材料已跃居最前沿。具有可调特性的多肽纳米管结构为CNT提供了具有挑战性的替代方案。早期对L-丙氨酰-L-缬氨酸(AV)和L-戊酰-L-丙氨酸(VA)的实验研究表明,它们具有形成新型多孔材料的潜力,可形成通道结构。类似的结构(Soldatov等,Angew.Chem.Int.Ed.43,6308(2004))。在此处报告的研究中,对两个紧密相关的环状二肽环[L-丙氨酰-L-缬氨酸](3)和环[L-戊基-L-丙氨酸](3)进行了DFT计算,并确定了它们的线性相关性[L-已经进行了丙氨酰-L-缬氨酸](3)和[L-缬氨酸-L-丙氨酸](3)的研究。本文介绍了纳米管寡聚二肽构建体AV和VA的循环和线性相关的一般结构和电子性质。我们已经比较了这些环状环的能隙及其与其他纳米管构造的能隙之间的线性关系。这些孤立的环结构的计算出的HOMO-LUMO间隙显着大于CNT。需要进一步研究以减小带隙,使其与CNT和其他无机管状结构相当。多肽设计有望成为工程化理想带隙以创建新型纳米结构多肽纳米管的主要工具。

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