Lee Kyung Min, Crenshaw Ecklin P, Rumi Mariacristina, White Timothy J, Bunning Timothy J, McConney Michael E
Air Force Research Laboratory, Materials and Manufacturing Directorate, Wright-Patterson Air Force Base, OH 45433, USA.
Azimuth Corporation, Beavercreek, OH 45431, USA.
Materials (Basel). 2020 Feb 6;13(3):746. doi: 10.3390/ma13030746.
It has previously been shown that for polymer-stabilized cholesteric liquid crystals (PSCLCs) with negative dielectric anisotropy, the position and bandwidth of the selective reflection notch can be controlled by a direct-current (DC) electric field. The field-induced deformation of the polymer network that stabilizes the devices is mediated by ionic charges trapped in or near the polymer. A unique and reversible electro-optic response is reported here for relatively thin films (≤5 μm). Increasing the DC field strength redshifts the reflection notch to longer wavelength until the reflection disappears at high DC fields. The extent of the tuning range is dependent on the cell thickness. The transition from the reflective to the clear state is due to the electrically controlled, chirped pitch across the small cell gap and not to the field-induced reorientation of the liquid crystal molecules themselves. The transition is reversible. By adjusting the DC field strength, various reflection wavelengths can be addressed from either a different reflective (colored) state at 0 V or a transparent state at a high DC field. Relatively fast responses (~50 ms rise times and ~200 ms fall times) are observed for these thin PSCLCs.
此前已经表明,对于具有负介电各向异性的聚合物稳定胆甾相液晶(PSCLC),选择性反射带隙的位置和带宽可由直流(DC)电场控制。稳定器件的聚合物网络的场致形变是由捕获在聚合物中或聚合物附近的离子电荷介导的。本文报道了相对薄膜(≤5μm)独特且可逆的电光响应。增加直流场强会使反射带隙红移至更长波长,直至在高直流场下反射消失。调谐范围的大小取决于盒厚。从反射态到透明态的转变是由于在小盒间隙上电控制的啁啾螺距,而非液晶分子本身的场致重取向。这种转变是可逆的。通过调节直流场强,可从0V时不同的反射(有色)态或高直流场下的透明态实现各种反射波长。对于这些薄的PSCLC,观察到相对较快的响应(上升时间约50ms,下降时间约200ms)。