光致聚合物
烯类反应
弹性体
材料科学
液晶
硫醇
高分子化学
高分子科学
复合材料
化学工程
聚合物
有机化学
聚合
化学
光电子学
工程类
作者
Taylor H. Ware,Zachary P. Perry,Claire M. Middleton,Scott T. Iacono,Timothy J. White
出处
期刊:ACS Macro Letters
[American Chemical Society]
日期:2015-08-17
卷期号:4 (9): 942-946
被引量:148
标识
DOI:10.1021/acsmacrolett.5b00511
摘要
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 mm2. 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.
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