首页> 外文期刊>Journal of the Optical Society of America, B. Optical Physics >Experimental studies of the mechanisms of photomechanical effects in a nematic liquid crystal elastomer
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Experimental studies of the mechanisms of photomechanical effects in a nematic liquid crystal elastomer

机译:向列型液晶弹性体中光机械效应机理的实验研究

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Azo-dye-doped liquid crystal elastomers (LCEs) are known to show a strong photomechanical response. We report on experiments that suggest that photothermal heating is the underlying mechanism in surface-constrained geometry. In particular, we use optical interferometry to probe the length change of the material and direct temperature measurements to determine heating. LCEs with various dopants and optical density were used to study the individual mechanisms. In the high dye-doped limit, most of the light is absorbed near the entry surface, which causes a local strain from photothermal heating and a nonlocal strain from thermal diffusion. The results of our research on the microscopic mechanisms of the photomechanical response can be applied to designing photomechanical materials for actuating/sensing devices, the potential basis of smart structures.
机译:掺杂偶氮染料的液晶弹性体(LCE)表现出很强的光机械响应。我们报告的实验表明,光热加热是表面受约束的几何结构的潜在机制。特别是,我们使用光学干涉仪来探测材料的长度变化,并直接进行温度测量以确定加热。具有各种掺杂剂和光密度的LCE被用来研究各个机制。在高的染料掺杂极限下,大部分光在入射表面附近被吸收,这导致来自光热加热的局部应变和来自热扩散的非局部应变。我们对光机械响应的微观机理的研究结果可用于设计用于致动/传感装置的光机械材料,这是智能结构的潜在基础。

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