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具有基于酯交换反应的键交换反应的适应性液晶弹性体。

Adaptable liquid crystal elastomers with transesterification-based bond exchange reactions.

机构信息

Department of Mechanical Engineering, University of Colorado Denver, Denver, CO 80217, USA.

Department of Chemical and Biological Engineering, University of Colorado Boulder, Boulder CO, 80309, USA.

出版信息

Soft Matter. 2018 Feb 14;14(6):951-960. doi: 10.1039/c7sm02110k. Epub 2018 Jan 10.

Abstract

Adaptable liquid crystal elastomers (LCEs) have recently emerged to provide a new and robust method to program monodomain LCE samples. When a constant stress is applied with active bond exchange reactions (BERs), polymer chains and mesogens gradually align in the strain direction. Mesogen alignment is maintained after removing the BER stimulus (e.g. by lowering the temperature) and the programmed LCE samples exhibit free-standing two-way shape switching behavior. Here, a new adaptable main-chain LCE system was developed with thermally induced transesterification BERs. The network combines the conventional properties of LCEs, such as an isotropic phase transition and soft elasticity, with the dynamic features of adaptable network polymers, which are malleable to stress relaxation due to the BERs. Polarized Fourier transform infrared measurements confirmed the alignment of polymer chains and mesogens after strain-induced programming. The influence of the creep stress, temperature, and time on the strain amplitude of two-way shape switching was examined. The LCE network demonstrates an innovative feature of reprogrammability, where the reversible shape-switching memory of programmed LCEs is readily deleted by free-standing heating as random BERs disrupt the mesogen alignment, so LCEs are reprogrammed after returning to the polydomain state. Due to the dynamic nature of the LCE network, it also exhibits a surface welding effect and can be fully dissolved in the organic solvent, which might be utilized for green and sustainable recycling of LCEs.

摘要

适应性液晶弹性体 (LCE) 最近出现,为单畴 LCE 样品的编程提供了一种新的、强大的方法。当应用恒定应力和活性键交换反应 (BER) 时,聚合物链和介晶体会逐渐在应变方向上对齐。在去除 BER 刺激(例如降低温度)后,介晶体的排列得以保持,并且编程后的 LCE 样品表现出自由双向形状切换行为。在这里,开发了一种具有热诱导酯交换 BER 的新型适应性主链 LCE 系统。该网络结合了 LCE 的常规特性,如各向同性相转变和柔软弹性,以及适应性网络聚合物的动态特性,由于 BER,它们易于受到应力松弛的影响。偏振傅里叶变换红外测量证实了应变诱导编程后聚合物链和介晶体的排列。研究了蠕变应力、温度和时间对双向形状切换的应变幅度的影响。LCE 网络具有可重新编程的创新性特征,其中通过自由-standing 加热很容易删除编程的 LCE 的可逆形状切换记忆,因为随机 BER 会破坏介晶体的排列,因此在返回多畴状态后可以重新编程。由于 LCE 网络的动态性质,它还表现出表面焊接效应,并且可以完全溶解在有机溶剂中,这可能用于 LCE 的绿色和可持续回收。

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