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首页> 外文期刊>Physical review, E >Graphene as transmissive electrodes and aligning layers for liquid-crystal-based electro-optic devices
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Graphene as transmissive electrodes and aligning layers for liquid-crystal-based electro-optic devices

机译:石墨烯作为透射电极和基于液晶电光器件的对准层

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In a conventional liquid crystal (LC) cell, polyimide layers are used to align the LC homogeneously in the cell, and transmissive indium tin oxide (ITO) electrodes are used to apply the electric field to reorient the LC along the field. It is experimentally presented here that monolayer graphene films on the two glass substrates can function concurrently as the LC aligning layers and the transparent electrodes to fabricate an LC cell, without using the conventional polyimide and ITO substrates. This replacement can effectively decrease the thickness of all the alignment layers and electrodes from about 100 nm to less than 1 nm. The interaction between LC and graphene through π-π electron stacking imposes a planar alignment on the LC in the graphene-based cell-which is verified using a crossed polarized microscope. The graphene-based LC cell exhibits an excellent nematic director reorientation process from planar to homeotropic configuration through the application of an electric field-which is probed by dielectric and electro-optic measurements. Finally, it is shown that the electro-optic switching is significantly faster in the graphene-based LC cell than in a conventional ITO-polyimide LC cell.
机译:在传统的液晶(LC)电池中,聚酰亚胺层用于将LC均匀地对准电池,并且透射铟锡(ITO)电极用于施加电场以沿着该领域重新定位LC。这里实验地呈现,两个玻璃基板上的单层石墨烯膜可以作为LC对准层和透明电极同时起作用,以制造LC电池,而不使用常规的聚酰亚胺和ITO基板。该替换可以有效地降低所有取向层的厚度和从约100nm到小于1nm的电极的厚度。 LC和石墨烯通过π-π电子堆叠之间的相互作用在基于石墨烯的电池中的LC上施加平面对准 - 这是使用交叉的偏振显微镜验证的。基于石墨烯的LC电池通过施加电场 - 通过电介质和电光测量探测,从平面展示了从平面到旁观结构的优异的列目司司长转向过程。最后,示出了基于石墨烯的LC电池中的电光切换比在常规ITO-聚酰亚胺LC电池中明显更快。

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