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首页> 外文期刊>RSC Advances >Mesoscopic simulations of temperature-dependent anchoring and wetting behavior at aqueous-liquid crystal interfaces in the presence of a rod-coil amphiphilic monolayer
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Mesoscopic simulations of temperature-dependent anchoring and wetting behavior at aqueous-liquid crystal interfaces in the presence of a rod-coil amphiphilic monolayer

机译:在杆线圈两亲型单层存在下水液晶界面温度依赖性锚定和润湿行为的介观模拟

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摘要

Dissipative particle dynamics simulations have been applied to study the temperature dependent anchoring and wetting behavior of thermotropic liquid crystals (LCs) in the presence of a rod-coil amphiphilic monolayer at the aqueous-LC interface. Upon cooling in the nematic phase, a thermally-induced anchoring transition from homeotropic through tilted to planar has been observed. The growth and propagation of smectic order from the interfaces to the bulk nematic LCs are demonstrated to be mainly responsible for this novel transition sequence. In particular, when a complete smectic layer in the amphiphile monolayer is induced around the bulk transition of nematic-smectic-A, the propagation of homeotropic alignment fails instantly and a unique planar anchoring configuration is formed instead. While heating towards the isotropic phase, simulation results show that the nematic-isotropic transition of confined LCs is slightly shifted to a higher temperature, and a nematic wetting layer with homeotropic alignment appears in the rod block monolayer when the bulk LCs is isotropic. Our systematic simulations throughout the whole phase regimes of LCs provide important molecular-level insight into how the coupling between the ordering of LCs and adsorbents and their temperature dependencies affect the anchoring behavior in this complex system, which should be instrumental in the rational design and application of advanced LC-based biosensors with optimal operating temperature range.
机译:已经应用耗散粒子动力学模拟,以研究在水对-LC界面处的杆卷筒两亲层层存在下热致液晶(LCS)的温度依赖性锚固和润湿行为。在向列阶段冷却时,已经观察到通过倾斜到平面的垂直术术中的热诱导的锚定转变。从甲型向批量型LCS的界面的生长和繁殖术语被证明主要负责这种新的过渡序列。特别地,当围绕向偏相识-A的体积转变诱导两亲型单层中的完全偏见时,垂直对准的传播立即失效,并且代替了独特的平面锚固配置。在加热朝向各向同异的阶段,仿真结果表明,当散装LC是各向异性时,在杆块单层中,暗示LC的向量 - 各向同性转变略微移至较高的温度,并且当块状LC是各向同性时,杆块单层出现具有垂直对准的向列润湿层。我们整个LCS的整个阶段制度的系统模拟提供了重要的分子层面了解如何在该复杂系统中的锚定行为和其温度依赖性之间的耦合如何影响该复杂系统中的锚定行为,这应该是合理的设计和应用中的乐器具有最佳工作温度范围的高级LC基生物传感器。

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  • 来源
    《RSC Advances》 |2018年第73期|共8页
  • 作者单位

    Chinese Acad Sci Beijing Natl Lab Mol Sci Joint Lab Polymer Sci &

    Mat State Key Lab Polymer Phys &

    Chem Inst Chem Beijing 100190 Peoples R China;

    Chinese Acad Sci Beijing Natl Lab Mol Sci Joint Lab Polymer Sci &

    Mat State Key Lab Polymer Phys &

    Chem Inst Chem Beijing 100190 Peoples R China;

    Katholieke Univ Leuven Dept Chem Div Polymer Chem &

    Mat Celestijnenlaan 200F B-3001 Heverlee Belgium;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学;
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