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A self-assembled nanopatch with peptide-organic multilayers and mechanical properties

机译:与peptide-organic自组装纳米贴片多层膜和力学性能

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摘要

Peptides enable the construction of a diversity of one-dimensional (1D) and zero-dimensional (0D) nanostructures by molecular self-assembly. To date, it is a great challenge to construct two-dimensional (2D) nanostructures from peptides. Here we introduce an organic molecule to tune the amphiphilic-like peptide assembly to form a peptide-organic 2D nanopatch structure. The nanomechanical properties of the nanopatch were explored by quantitative nanomechanical imaging and force control manipulation. The peptide-organic patches are multilayers composed of several domains, which can be peeled off stepwise. The patch formation provides an approach towards constructing 2D nanostructures by peptide-organic assembly and it could be potentially utilized in a wide range of applications such as functional biomaterials.
机译:肽使建筑的多样性一维(1 d)和零维(0 d)通过分子自组装纳米结构。建造日期,这是一个巨大的挑战二维(2 d)纳米结构肽。调优amphiphilic-like肽组装形成一个peptide-organic 2 d纳米贴片结构。的纳米机械性质纳米贴片被定量探索纳米机械吗成像和操纵力的控制。peptide-organic补丁多层膜组成的几个领域,可以剥掉逐步。方法对构造二维纳米结构由peptide-organic大会,它可能是可能在范围广泛的利用应用,如功能性生物材料。

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