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气/水界面处氟碳-碳氢二嵌段高度均匀的介观自组装域的尺寸、形状及横向相关性:一项掠入射小角X射线散射研究

Size, Shape, and Lateral Correlation of Highly Uniform, Mesoscopic, Self-Assembled Domains of Fluorocarbon-Hydrocarbon Diblocks at the Air/Water Interface: A GISAXS Study.

作者信息

Veschgini Mariam, Abuillan Wasim, Inoue Shigeto, Yamamoto Akihisa, Mielke Salomé, Liu Xianhe, Konovalov Oleg, Krafft Marie Pierre, Tanaka Motomu

机构信息

Physical Chemistry of Biosystems, Institute of Physical Chemistry, Heidelberg University, 69120, Heidelberg, Germany.

Present address: Kao company, 1334 Minato, Wakayama, Wakayama Prefecture, 640-8580, Japan.

出版信息

Chemphyschem. 2017 Oct 6;18(19):2791-2798. doi: 10.1002/cphc.201700325. Epub 2017 Jul 7.

Abstract

The shape and size of self-assembled mesoscopic surface domains of fluorocarbon-hydrocarbon (FnHm) diblocks and the lateral correlation between these domains were quantitatively determined from grazing incidence small-angle X-ray scattering (GISAXS). The full calculation of structure and form factors unravels the influence of fluorocarbon and hydrocarbon block lengths on the diameter and height of the domains, and provides the inter-domain correlation length. The diameter of the domains, as determined from the form factor analysis, exhibits a monotonic increase in response to the systematic lengthening of each block, which can be attributed to the increase in van der Waals attraction between molecules. The pair correlation function in real space calculated from the structure factor implies that the inter-domain correlation can reach a distance that is over 25 times larger than the domain's size. The full calculation of the GISAXS signals introduced here opens a potential towards the hierarchical design of mesoscale domains of self-assembled small organic molecules, covering several orders of magnitude in space.

摘要

通过掠入射小角X射线散射(GISAXS)定量测定了碳氟化合物 - 碳氢化合物(FnHm)二嵌段自组装介观表面域的形状和尺寸,以及这些域之间的横向相关性。结构因子和形状因子的全面计算揭示了碳氟化合物和碳氢化合物嵌段长度对域直径和高度的影响,并提供了域间相关长度。根据形状因子分析确定的域直径,随着每个嵌段的系统延长而单调增加,这可归因于分子间范德华引力的增加。从结构因子计算得到的实空间对关联函数表明,域间相关性可以达到比域尺寸大25倍以上的距离。本文介绍的GISAXS信号的全面计算为自组装小有机分子介观域的层次设计开辟了潜力,其涵盖了几个数量级的空间范围。

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