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Flexoelectric effect in an in-plane switching (IPS) liquid crystal cell for low-power consumption display devices

机译:用于低功耗显示装置的平面内切换(IPS)液晶单元的柔性电效应

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Technology of displaying static images in portable displays, advertising panels and price tags pursues significant reduction in power consumption and in product cost. Driving at a low-frequency electric field in fringe-field switching (FFS) mode can be one of the efficient ways to save powers of the recent portable devices, but a serious drop of image-quality, so-called image-flickering, has been found in terms of the coupling of elastic deformation to not only quadratic dielectric effect but linear flexoelectric effect. Despite of the urgent requirement of solving the issue, understanding of such a phenomenon is yet vague. Here, we thoroughly analyze and firstly report the flexoelectric effect in in-plane switching (IPS) liquid crystal cell. The effect takes place on the area above electrodes due to splay and bend deformations of nematic liquid crystal along oblique electric fields, so that the obvious spatial shift of the optical transmittance is experimentally observed and is clearly demonstrated based on the relation between direction of flexoelectric polarization and electric field polarity. In addition, we report that the IPS mode has inherent characteristics to solve the image-flickering issue in the low-power consumption display in terms of the physical property of liquid crystal material and the electrode structure.
机译:在便携式显示器中显示静态图像的技术,广告面板和价格标签追求功耗和产品成本显着降低。在边缘场切换(FFS)模式下在低频电场驱动可以是节省最近便携式设备的权力的有效方法之一,但是图像质量的严重滴,所谓的图像闪烁在弹性变形的耦合方面被发现不仅是二次介电效应,而是线性屈燃效应。尽管解决问题的迫切要求,但对这种现象的理解尚未含糊。在这里,我们彻底分析并首先报道了平面内切换(IPS)液晶单元的柔性电效应。由于沿倾斜电场的展开和弯曲变形,因此在沿倾斜电场的展开和弯曲变形,因此在实验观察到光学透射率的明显空间偏移,并基于柔性释放方向之间的关系清楚地说明了效果,使得显着的光透射空间偏移和电场极性。此外,我们报告说,IPS模式具有固有的特性,以解决液晶材料的物理性能和电极结构的低功耗显示中的图像闪烁问题。

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