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Bio-inspired thermal-responsive inverse opal films with dual structural colors based on liquid crystal elastomer

机译:生物启发的热响应反蛋白石膜,基于液晶弹性体的双重结构颜色

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摘要

We have developed a bio-inspired thermal-responsive micropatterned inverse opal film with dual structural colors based on liquid crystal elastomers (LCEs). Herein, inverse opal films are fabricated by infiltrating the LC precursor into silica opal photonic crystal templates followed by UV irradiation and then removing the silica spheres. Furthermore, the micropatterned inverse opal films with dual structural colors have been fabricated by a two-step photo-polymerization technique combining a DC electric field. The DC electric field is used to tune the lattice space of the silica opal templates at the second photo-polymerization stage. In addition, the photonic band gaps of the LCE inverse opal films with dual structural colors can be reversibly switched by temperature because of the thermally induced molecular orientation change of the LCEs. This approach to create bi-colored inverse opals with micropatterns opens up a new way to the development of display and photonic applications.
机译:我们已经开发了一种具有生物启发性的热响应微图案反蛋白石薄膜,该薄膜具有基于液晶弹性体(LCE)的双重结构色。在此,反蛋白石膜是通过将LC前体渗入二氧化硅蛋白石光子晶体模板中,然后进行紫外线照射,然后除去二氧化硅球而制成的。此外,已经通过结合直流电场的两步光聚合技术制备了具有双重结构颜色的微图案反蛋白石膜。直流电场用于在第二个光聚合阶段调整二氧化硅蛋白石模板的晶格空间。另外,由于LCE的热诱导分子取向变化,具有双结构颜色的LCE反蛋白石膜的光子带隙可以通过温度可逆地切换。这种用微图案创建双色反蛋白石的方法为显示和光子应用的开发开辟了一条新途径。

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