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亲水性对使用朗缪尔-布洛杰特法自组装二维胶体晶体的关键影响。

Crucial Impact of Hydrophilicity on the Self-Assembled 2D Colloidal Crystals Using Langmuir-Blodgett Method.

作者信息

Wu Heping, Niu Gang, Ren Wei, Jiang Luyue, Liang Owen, Zhao Jinyan, Liu Yangyang, Xie Ya-Hong

机构信息

Electronic Materials Research Laboratory, Key Laboratory of the Ministry of Education & International Center for Dielectric Research, School of Electronic Science and Engineering, Xi'an Jiaotong University, Xi'an 710049, China.

Department of Materials Science and Engineering, University of California, Los Angeles, Los Angeles, California 90095, United States.

出版信息

Langmuir. 2020 Sep 1;36(34):10061-10068. doi: 10.1021/acs.langmuir.0c01168. Epub 2020 Aug 13.

Abstract

Large-scale close-packed two-dimensional (2D) colloidal crystal with high coverage is indispensable for various promising applications. The Langmuir-Blodgett (LB) method is a powerful technique to prepare 2D colloidal crystals. However, the self-assembly and movement of microspheres during the whole LB process are less analyzed. In this study, we clarify the crucial impact of hydrophilicity of the microspheres on their self-assembly in the LB process and on the properties of the prepared 2D colloidal crystals. The characteristic surface pressure-area isotherms of the microspheres have been analyzed and adjusted by only counting the quantity of the microspheres on the water surface, which leads to more accurate results. The critical surface pressures for hydrophilic and hydrophobic microspheres are about 61 and 46 mN/m, respectively. The decrease of the surface hydrophilicity of microspheres facilitates their self-assembly on the water surface, which further leads to higher coverage and less defects of the 2D colloidal crystals. A coverage of as high as 97% was obtained using hydrophobic microspheres. Entropy and intersphere capillary forces drive the self-assembly and transportation of the microspheres, respectively. Caused by the diffraction of visible light, opposite contrasts at local adjacent regions on the surface of the 2D colloidal crystals have been observed. The understanding of self-assembly of the microspheres during the LB process paves the way to fabricate the high-quality 2D colloidal crystals for various applications such as photonic papers and inks, stealth materials, biomimetic coatings, and related nanostructures.

摘要

具有高覆盖率的大规模紧密堆积二维(2D)胶体晶体对于各种有前景的应用来说是不可或缺的。朗缪尔-布洛杰特(LB)法是制备二维胶体晶体的一种强大技术。然而,在整个LB过程中微球的自组装和运动较少被分析。在本研究中,我们阐明了微球亲水性对其在LB过程中的自组装以及对所制备的二维胶体晶体性质的关键影响。通过仅计算水表面微球的数量,对微球的特征表面压力-面积等温线进行了分析和调整,从而得到了更准确的结果。亲水性和疏水性微球的临界表面压力分别约为61和46 mN/m。微球表面亲水性的降低促进了它们在水表面的自组装,这进而导致二维胶体晶体具有更高的覆盖率和更少的缺陷。使用疏水性微球获得了高达97%的覆盖率。熵和球间毛细力分别驱动微球的自组装和运输。由于可见光的衍射,在二维胶体晶体表面的局部相邻区域观察到了相反的对比度。对LB过程中微球自组装的理解为制造用于各种应用(如光子纸和油墨、隐身材料、仿生涂层及相关纳米结构) 的高质量二维胶体晶体铺平了道路。

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