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Cellulose-based liquid crystalline photoresponsive films with tunable surface wettability

机译:具有可调节表面润湿性的纤维素基液晶光敏膜

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摘要

We report on a new type of liquid crystalline cellulosic films with light controllable reversible wettability. The films are prepared from a thermotropic cellulose derivative functionalized with azo-containing groups. These groups exhibit dynamic changes in interfacial properties in response to UV irradiation. The UV irradiation induces trans-to-cis isomerization in the azobenzene moiety, which causes a conformational change in the upper molecular layers of the thin films. These changes originate a hydrophobic to comparatively hydrophilic transformation of the surface. The reversible wettability of the surface results from the cis/trans photo and thermal isomerization. The UV-vis absorption spectra, as well as contact angle measurements with UV irradiation, clearly support the understanding of the phenomenon. This type of surface design enables the amplification of molecular level conformational transitions to macroscopic changes in interface properties using the means of isomerism. This opens new opportunities in surface engineering using eco-friendly cellulose manipulation.
机译:我们报道了一种新型的具有可控光可逆润湿性的液晶纤维素膜。该膜由用含偶氮基团官能化的热致纤维素衍生物制备。这些基团表现出响应紫外线辐射的界面性质的动态变化。 UV辐射在偶氮苯部分中引起反式-顺式异构化,这会导致薄膜的上部分子层发生构象变化。这些变化导致表面从疏水性转变为相对亲水性。表面的可逆润湿性来自顺/反光和热异构化。 UV-vis吸收光谱以及与UV辐射的接触角测量清楚地支持了对现象的理解。这种类型的表面设计使分子水平构象转变能够放大,从而利用异构现象实现界面性质的宏观变化。这为使用环保纤维素处理的表面工程创造了新的机会。

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