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A Novel Approach to Achieve Higher Order Using Pseudo-discotic Chromophores in Electro-optic Materials and Devices

机译:一种新的方法在电光材料和装置中使用伪光通发色团实现更高阶的方法

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Organic materials have great potential for electro-optic devices. Achieving higher unidirectional ordering of chromophores is the main challenge in using organic materials in such devices. The prime reason for this decreased order is due to interchromophore interactions which lead to a decrease in the electro-optic coefficient, r33. A material consisting of a chromophore surrounded by dendrons and possessing an appropriate aspect ratio should facilitate the near Ferro-electric ordering as observed in the discotic liquid crystals. For that purpose, a prototype dendrimeric chromophore has been synthesized and will be used in Mach-Zehnder devices to achieve lower drive voltages.
机译:有机材料具有很大的电光器件潜力。实现发色团的更高单向排序是在这种装置中使用有机材料的主要挑战。这种下降顺序的源性原因是由于间同学相互作用导致电光系数的降低R33。由由树枝状和具有适当纵横比包围的发色团组成的材料应促进在盘状液晶中观察到的近近铁路。为此目的,已合成了原型树枝状过晶色团,并将在Mach-Zehnder设备中使用以实现较低的驱动电压。

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