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Red, Green, and Blue Reflections Enabled in an Electrically Tunable Helical Superstructure

机译:电可调螺旋上层结构中的红色,绿色和蓝色反射

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Materials with tunable optical properties in the visible spectrum are intriguingly important in science and technology. Such desired tunability can be conveniently accomplished by controlling optical materials with electric field. Now an organic film of self-organized helical superstructure producing electrically tunable reflection of visible light is introduced in this work. The composite is a dual-frequency thermosensitive cholesteric (DFTC) material consisting of a liquid crystal host doped with a binary chiral-dopant mixture including a thermosensitive chiral switch. The red, green, and blue reflections in the DFTC film can be obtained by varying the frequencies of a 45 Vrms applied voltage to induce dielectric heating. The resulting variation in temperature and, in turn, in helical pitch length, enables various wavelengths of reflection to render full-color display in a single film without the need of film stacking. As far as it is known, this is the first work to demonstrate broad electrical tuning of cholesteric reflection in red, green, and blue.
机译:在可见光谱中具有可调光学特性的材料在科学技术中至关重要。通过用电场控制光学材料可以方便地实现这种所需的可调性。现在,在这项工作中引入了具有自组织螺旋上层结构的有机膜,该有机膜会产生可见光的电可调反射。该复合物是双频热敏胆甾醇(DFTC)材料,由掺有包括热敏手性开关的二元手性-掺杂剂混合物的液晶主体组成。 DFTC膜中的红色,绿色和蓝色反射可以通过改变45 Vrms施加电压的频率来引起电介质加热来获得。所产生的温度变化以及螺旋节距长度的变化使各种反射波长能够在单个膜中呈现全色显示,而无需进行膜堆叠。据了解,这是展示红色,绿色和蓝色的胆甾型反射的广泛电调谐的第一项工作。

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