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Effect of Isomeric Amine Chain Extenders and Crosslink Density on the Properties of Liquid Crystal Elastomers

机译:异构胺链增量剂和交联密度对液晶弹性体性能的影响

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摘要

Among the various types of shape changing materials, liquid crystal elastomers (LCEs) have received significant attention as they can undergo programmed and reversible shape transformations. The molecular engineering of LCEs is the key to manipulating their phase transition, mechanical properties, and actuation performance. In this work, LCEs containing three different types of butyl groups (n-, iso-, and sec-butyl) in the side chain were synthesized, and the effect of isomeric amine chain extenders on the thermal, mechanical, and actuation properties of the resulting LCEs was investigated. Because of the considerably low reactivity of the sec-butyl group toward the diacrylate in the LC monomer, only a densely crosslinked LCE was synthesized. Most interestingly, the mechanical properties, actuation temperature, and blocking stress of the LCEs comprising isobutyl groups were higher than those of the LCEs comprising n-butyl groups. This difference was attributed to the presence of branches in the LCEs with isobutyl groups, which resulted in a tighter molecular packing and reduced the free volume. Our results suggest a facile and effective method for synthesizing LCEs with tailored mechanical and actuation properties by the choice of chain extenders, which may advance the development of soft actuators for a variety of applications in aerospace, medicine, and optics.
机译:在各种类型的形状的变化的材料,液晶弹性体(LCES)已收到显著关注,因为它们可进行编程和可逆的形状转换。 LCES的分子工程的关键是操纵其相转变,机械性能,和致动性能。在这项工作中,含有三种不同类型的在侧链丁基(正 - ,异 - ,和仲丁基)的LCES合成,和同分异构的胺增链剂的对热,机械和致动的性能的影响导致LCES进行了调查。因为仲丁基朝向LC单体的二丙烯酸酯的相当低的反应性,只有一个致密的交联LCE的合成。最有趣的是,机械特性,致动温度,和包含异丁基基团的LCES阻断应力均较LCES的包括正丁基高。这个差异归因于分支与异丁基基团,这导致更紧密的分子堆积,减少的自由体积的LCES的存在。我们的结果表明通过选择增链剂,其可促进软致动器的发展用于各种航空航天,医学,和光学应用合成具有定制的机械和致动性能LCES的简便而有效的方法。

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