论文标题

电液晶网络中的瞬态响应和结构域形成

Transient response and domain formation in electrically deforming liquid crystal networks

论文作者

Kusters, Guido L. A., van der Schoot, Paul, Storm, Cornelis

论文摘要

最近,Van der Kooij和同事认识到电动液晶网络的动力学中的三个不同的瞬态方案[van der Kooij等,Nat。社区。 10,1(2019)]。基于包含空间解决信息的Landau理论框架,我们解释了这些方案:最初,响应以热噪声为主,然后胶片的顶部扩展,然后将这种响应渗透到大量中。这种解释的重要标志是制度时间尺度对薄膜厚度的显着依赖性,在那里我们观察到清晰的薄膜到胶合型过渡。过渡点与散装中的空间不均匀性的出现相吻合,即域的形成,应避免由于其产生的稳态膨胀较低而被避免。最后,我们表明,可以通过减小膜的初始厚度,增加中质质量的线性尺寸或在网络中交联后其定向顺序来抑制这种结构域的形成,尽管这是以变形幅度为代价的。我们的结果有助于实现对智能液晶网络涂料的激活方式的更好控制。

Recently, Van der Kooij and co-workers recognised three distinct, transient regimes in the dynamics of electrically-deforming liquid crystal networks [Van der Kooij et al., Nat. Commun. 10, 1 (2019)]. Based on a Landau-theoretical framework, which encompasses spatially resolved information, we interpret these regimes: initially, the response is dominated by thermal noise, then the top of the film expands, followed by a permeation of this response into the bulk. An important signature of this interpretation is a significant dependence of the regime time scales on film thickness, where we observe a clear thin-film-to-bulk transition. The point of transition coincides with the emergence of spatial inhomogeneities in the bulk, i.e., domain formation, and should be avoided due to the less predictable steady-state expansion it gives rise to. Finally, we show that this domain formation can be suppressed by decreasing the initial thickness of the film, and increasing the linear dimensions of the mesogens, or their orientational order when crosslinked into the network, though this comes at the cost of the deformation magnitude. Our results contribute to achieving finer control over how smart liquid crystal network coatings are activated.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源