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通过硫醇-烯光聚合制备的可编程液晶弹性体。

Programmable Liquid Crystal Elastomers Prepared by Thiol-Ene Photopolymerization.

作者信息

Ware Taylor H, Perry Zachary P, Middleton Claire M, Iacono Scott T, White Timothy J

机构信息

Materials and Manufacturing Directorate, Air Force Research Laboratory, Wright-Patterson Air Force Base, Ohio 45433, United States.

Azimuth Corporation, Beavercreek, Ohio 45431, United States.

出版信息

ACS Macro Lett. 2015 Sep 15;4(9):942-946. doi: 10.1021/acsmacrolett.5b00511. Epub 2015 Aug 17.

Abstract

The spontaneous conversion of a flat film into a 3-D shape requires local programming of the mechanical response. Historically, the ability to locally program the mechanical response of high strain (>30%) liquid crystalline elastomers (LCEs) has been limited to magnetic or mechanical alignment techniques, which limits spatial resolution. Recently, we reported on the preparation of LCEs capable of 55% strain with spatial control of the mechanical response at scales as small as 0.01 mm. Here, we report a distinct formulation strategy to realize programmable stimulus-response in LCEs. Photopolymerization of thiol-ene/acrylate formulations yields materials that exhibit large reversible strain up to 150%. The photopolymerization reaction is extremely rapid, reducing preparation time from days to minutes. The mechanical behavior of these materials can be tuned by varying cross-link density. Spatial and hierarchical programming of the director profile is demonstrated, enabling 3-D shape change, including twisting ribbons and localized Gaussian curvature.

摘要

平面薄膜自发转变为三维形状需要对机械响应进行局部编程。从历史上看,对高应变(>30%)液晶弹性体(LCE)的机械响应进行局部编程的能力一直局限于磁或机械取向技术,这限制了空间分辨率。最近,我们报道了能够实现55%应变的LCE的制备,其机械响应在小至0.01毫米的尺度上具有空间控制能力。在此,我们报道了一种独特的配方策略,以实现LCE中可编程的刺激响应。硫醇-烯/丙烯酸酯配方的光聚合产生的材料可展现高达150%的大可逆应变。光聚合反应极其迅速,将制备时间从数天缩短至数分钟。这些材料的机械行为可通过改变交联密度进行调节。展示了指向矢分布的空间和层次编程,实现了三维形状变化,包括扭转带和局部高斯曲率。

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