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Controlling the volatility of the written optical state in electrochromic DNA liquid crystals

机译:控制电致变色DNA液晶中书面光学态的挥发性

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摘要

Liquid crystals are widely used in displays for portable electronic information display. To broaden their scope for other applications like smart windows and tags, new material properties such as polarizer-free operation and tunable memory of a written state become important. Here, we describe an anhydrous nanoDNA–surfactant thermotropic liquid crystal system, which exhibits distinctive electrically controlled optical absorption, and temperature-dependent memory. In the liquid crystal isotropic phase, electric field-induced colouration and bleaching have a switching time of seconds. Upon transition to the smectic liquid crystal phase, optical memory of the written state is observed for many hours without applied voltage. The reorientation of the DNA–surfactant lamellar layers plays an important role in preventing colour decay. Thereby, the volatility of optoelectronic state can be controlled simply by changing the phase of the material. This research may pave the way for developing a new generation of DNA-based, phase-modulated, photoelectronic devices.
机译:液晶广泛用于便携式电子信息显示的显示器中。为了扩大其在其他应用程序(如智能窗口和标签)中的应用范围,新的材料属性(如无偏光镜操作和可调的书面状态记忆)变得很重要。在这里,我们描述了一种无水的nanoDNA表面活性剂热致液晶系统,该系统表现出独特的电控光吸收和依赖温度的记忆。在液晶各向同性相中,电场引起的着色和漂白的切换时间为几秒钟。转变为近晶液晶相后,在没有施加电压的情况下,可以观察到多个小时的写入状态的光学存储器。 DNA-表面活性剂层状层的重新定向在防止颜色衰减中起着重要作用。由此,可以简单地通过改变材料的相来控制光电子状态的挥发性。这项研究可能为开发新一代基于DNA的调相光电器件铺平道路。

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