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Isotropic Elastic Stress Induced Large Temperature Range Liquid Crystal Blue Phase at Room Temperature

机译:室温下各向同性弹性应力诱导的大温度范围液晶蓝相

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摘要

A thermodynamically stable blue phase (BP) based on the conventional rod like nematogen is demonstrated for the first time at room temperature by only diluting a chiral–nematic mixture with the help of some nonmesogenic isotropic liquid. It is observed that addition of this isotropic liquid does not only stabilize the BPs at room temperature, but also significantly improves the temperature range (reversible during heating and cooling) of the BPs to the level of more than 28 °C. Apart from that, we have observed its microsecond electro-optic response time and, external electric field induced wavelength tuning, which are the two indispensable requirements for next generation optical devices, photonic displays, lasers, and many more. Here we propose that the isotropic liquid plays two crucial roles simultaneously. On one hand, it reduces the effective elastic moduli (EEM) of the BP mixtures and stabilizes the BPs at room temperature, and on the other hand, it increases the symmetry of the mutual orientation ordering among the neighboring unit cells of the BP. Hence, the resultant mixture becomes better resistive to some microscopic change due to the change in temperature, even over a large range.
机译:首次在室温下通过仅使用一些非介晶各向同性液体稀释手性-向列混合物,证明了基于常规棒状线虫(如线虫)的热力学稳定蓝相(BP)。观察到,添加这种各向同性液体不仅可以使BP在室温下稳定,而且可以将BP的温度范围(在加热和冷却期间可逆)提高到超过28°C。除此之外,我们还观察到了它的微秒电光响应时间以及外部电场感应的波长调谐,这是下一代光学设备,光子显示器,激光器等的两个必不可少的要求。在这里,我们建议各向同性液体同时扮演两个关键角色。一方面,它降低了BP混合物的有效弹性模量(EEM),并使BP在室温下稳定,另一方面,它增加了BP相邻单元之间相互定向顺序的对称性。因此,即使在较大范围内,所得混合物也由于温度变化而更好地抵抗某些微观变化。

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