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阴离子在具有离散阳离子结合位点的表面上吸附诱导的液晶锚定转变中的作用。

The role of anions in adsorbate-induced anchoring transitions of liquid crystals on surfaces with discrete cation binding sites.

机构信息

Department of Chemical and Biological Engineering, University of Wisconsin-Madison, 1415 Engineering Drive, Madison, Wisconsin 53706-1607, USA.

出版信息

Soft Matter. 2018 Jan 31;14(5):797-805. doi: 10.1039/c7sm01981e.

Abstract

We report a combined theoretical and experimental effort to elucidate systematically for the first time the influence of anions of transition metal salt-decorated surfaces on the orientations of supported films of nematic liquid crystals (LCs) and adsorbate-induced orientational transitions of these LC films. Guided by computational chemistry predictions, we find that nitrate anions weaken the binding of 4'-n-pentyl-4-biphenylcarbonitrile (5CB) to transition metal cations, as compared to perchlorate salts, although binding is still sufficiently strong to induce homeotropic (perpendicular) orientations of 5CB. In addition, we find the orientations of the LC to be correlated across all metal cations investigated by a molecular anchoring energy density that is calculated as the product of the single-site binding energy and metal cation binding site density on the surface. The weaker single-site binding energy caused by nitrate also facilitates competitive binding of adsorbates to the metal cations, leading to more facile orientational transitions induced by adsorbates. Finally, our analysis suggests that nitrate anions recruit water via hydrogen bonding to the metal binding sites, modulating further the relative net binding energies of 5CB and adsorbates to surfaces decorated with metal nitrates. After accounting for the presence of water, we find a universal exponential relationship between the calculated displacement free energies and measured dynamic response of LCs to adsorbates for all metal salts studied, independent of the metal salt anion.

摘要

我们报告了一项理论和实验相结合的努力,首次系统地阐明了过渡金属盐修饰表面的阴离子对向列液晶(LC)支撑膜的取向以及这些 LC 膜中吸附诱导的取向转变的影响。在计算化学预测的指导下,我们发现与高氯酸盐盐相比,硝酸盐阴离子会削弱 4'-n-戊基-4-联苯甲腈(5CB)与过渡金属阳离子的结合,尽管结合仍然足够强,可以诱导 5CB 产生垂直取向。此外,我们发现 LC 的取向通过分子锚固能密度与所有研究的金属阳离子相关,该密度是单一位点结合能与表面上金属阳离子结合位密度的乘积。由于硝酸盐引起的较弱的单一位点结合能也促进了吸附物与金属阳离子的竞争性结合,从而更容易发生吸附物诱导的取向转变。最后,我们的分析表明,硝酸盐阴离子通过氢键招募水到金属结合位点,进一步调节金属硝酸盐修饰表面上 5CB 和吸附物的相对净结合能。在考虑到水的存在后,我们发现所有研究的金属盐中,计算的位移自由能与 LC 对吸附物的动态响应之间存在通用的指数关系,与金属盐阴离子无关。

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