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Electro-optic bistability in organosiloxane bimesogenic liquid crystals

机译:有机硅氧烷双生液晶中的电光双稳态

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摘要

In this paper we report the electro-optic characterization of two homologous series of low molar mass bimesogenic siloxane-containing liquid crystals. The materials used have two alkoxycyanobiphenyl mesogenic units with variable alkyl chain joined by a two- or five-siloxane moiety and all exhibit stable smectic A mesophases over wide temperature ranges (up to 100 ℃ wide). Due to their inherent ruggedness these materials have potential for use in polarizer-free, bistable, scattering display and storage devices. The bistable modes are at low and high frequencies. The low frequency mode (write) is a highly scattering focal conic texture resulting from electrohydrodynamic instabilities while the high frequency mode (erase) is a clear state due to dielectric reorientation of the material. Both modes are preserved upon removal of the applied electric field. We present threshold voltages as a function of temperature, frequency, and cell thickness and response times as a function of voltage for each of the bistable modes. We find reduced threshold voltages (5 ≤ V_(th) ≤ 12 V/μm) and response times that are strongly dependent on applied voltage (50 ms ≤ τ ≤ 10 s). These operating conditions would suggest that these materials are particularly suitable for slow update, large area, low power information panels and displays.
机译:在本文中,我们报告了两个低摩尔质量的双生基含硅氧烷液晶的同源序列的电光表征。使用的材料具有两个烷氧基氰基联苯介晶单元,它们的可变烷基链通过两个或五个硅氧烷部分连接,并且均在较宽的温度范围(最高100℃宽)上表现出稳定的近晶A中间相。由于其固有的坚固性,这些材料具有在无偏振器,双稳态,散射显示和存储设备中使用的潜力。双稳态模式处于低频和高频。低频模式(写入)是由电流体动力学不稳定性引起的高度散射的焦锥纹理,而高频模式(擦除)由于材料的介电重新定向而处于清晰状态。去除施加的电场后,两种模式都得以保留。对于每种双稳态模式,我们将阈值电压作为温度,频率和电池厚度的函数,并将响应时间作为电压的函数。我们发现降低的阈值电压(5≤V_(th)≤12 V /μm)和响应时间很大程度上取决于所施加的电压(50 ms≤τ≤10 s)。这些操作条件表明这些材料特别适用于缓慢更新,大面积,低功耗的信息面板和显示器。

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