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耗散粒子动力学模拟向列相液晶在水相中的敏感锚定行为。

Dissipative Particle Dynamics Simulation of the Sensitive Anchoring Behavior of Smectic Liquid Crystals at Aqueous Phase.

机构信息

State Key Laboratory of Materials-Oriented Chemical Engineering, College of Chemical Engineering, Nanjing Tech University, Nanjing 211816, China.

出版信息

Molecules. 2022 Nov 1;27(21):7433. doi: 10.3390/molecules27217433.

Abstract

Rational design of thermotropic liquid crystal (LC)-based sensors utilizing different mesophases holds great promise to open up novel detection modalities for various chemical and biological applications. In this context, we present a dissipative particle dynamics study to explore the unique anchoring behavior of nematic and smectic LCs at amphiphile-laden aqueous-LC interface. By increasing the surface coverage of amphiphiles, two distinct anchoring sequences, a continuous planar-tilted-homeotropic transition and a discontinuous planar-to-homeotropic transition, can be observed for the nematic and smectic LCs, respectively. More importantly, the latter occurs at a much lower surface coverage of amphiphiles, demonstrating an outstanding sensitivity for the smectic-based sensors. The dynamics of reorientation further reveals that the formation of homeotropic smectic anchoring is mainly governed by the synchronous growth of smectic layers through the LCs, which is significantly different from the mechanism of interface-to-bulk ordering propagation in nematic anchoring. Furthermore, the smectic LCs have also been proven to possess a potential selectivity in response to a subtle change in the chain rigidity of amphiphiles. These simulation findings are promising and would be valuable for the development of novel smectic-based sensors.

摘要

利用不同中间相的热致液晶(LC)基传感器的合理设计有望为各种化学和生物应用开辟新的检测模式。在这种情况下,我们进行了耗散粒子动力学研究,以探索各向异性 LC 和近晶 LC 在两亲物负载水基 LC 界面处的独特锚定行为。通过增加两亲物的表面覆盖率,可以观察到各向异性 LC 和近晶 LC 分别出现两种不同的连续平面倾斜各向同性转变和不连续平面各向同性转变的锚定序列。更重要的是,后者发生在更低的两亲物表面覆盖率下,表明基于近晶的传感器具有出色的灵敏度。重新取向的动力学进一步表明,近晶锚定的各向同性形成主要受 LC 通过同步生长近晶层来控制,这与各向异性锚定中界面到体相有序传播的机制明显不同。此外,还证明了近晶 LC 对两亲物链刚性的微小变化具有潜在的选择性。这些模拟结果很有前景,对新型近晶基传感器的开发将具有重要意义。

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