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肽纳米片分级组装中的结构确定步骤。

Structure-determining step in the hierarchical assembly of peptoid nanosheets.

机构信息

The Molecular Foundry, Lawrence Berkeley National Laboratory , 1 Cyclotron Road, Berkeley, California 94720, United States.

出版信息

ACS Nano. 2014 Nov 25;8(11):11674-84. doi: 10.1021/nn505007u. Epub 2014 Oct 24.

Abstract

Organic two-dimensional nanomaterials are of growing importance, yet few general synthetic methods exist to produce them in high yields and to precisely functionalize them. We previously developed an efficient hierarchical supramolecular assembly route to peptoid bilayer nanosheets, where the organization of biomimetic polymer sequences is catalyzed by an air-water interface. Here we determine at which stages of assembly the nanoscale and atomic-scale order appear. We used X-ray scattering, grazing incidence X-ray scattering at the air-water interface, electron diffraction, and a recently developed computational coarse-grained peptoid model to probe the molecular ordering at various stages of assembly. We found that lateral packing and organization of the chains occurs during the formation of a peptoid monolayer, prior to its collapse into a bilayer. Identifying the structure-determining step enables strategies to influence nanosheet order, to predict and optimize production yields, and to further engineer this class of material. More generally, our results provide a guide for using fluid interfaces to catalytically assemble 2D nanomaterials.

摘要

有机二维纳米材料越来越重要,但目前很少有通用的合成方法可以高产率地制备它们,并对其进行精确的功能化。我们之前开发了一种有效的分级超分子组装方法来制备肽双层纳米片,其中仿生聚合物序列的组织是由气-液界面催化的。在这里,我们确定了纳米级和原子级有序出现的组装阶段。我们使用 X 射线散射、气-液界面掠入射 X 射线散射、电子衍射和最近开发的计算粗粒肽模型来探测组装过程中各个阶段的分子有序性。我们发现,在肽单层坍塌成双层之前,其在形成过程中就发生了链的横向堆积和组织。确定结构决定步骤可以使我们能够影响纳米片的有序性,预测和优化产量,并进一步对这类材料进行工程设计。更一般地说,我们的结果为使用流体界面催化组装二维纳米材料提供了指导。

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