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Main-chain chiral smectic polymers showing a large electroclinic effect in the SmA* phase

机译:主链手性近晶聚合物在SmA *相中显示出大的电临床效应

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The synthesis and characterization of a main-chain smectic liquid-crystalline polymer system designed for development into electromechanical actuators is described. The chemical structure is chosen to provide a large electroclinic effect in the SmA* phase, with large concomitant layer shrinkage (a rare combination). The polymers are prepared by acyclic diene metathesis polymerization (ADMET) of liquid-crystalline alpha,omega-dienes. Oligomers with a degree of polymerization of similar to 10-30 are obtained using Grubbs first-generation catalyst, while oligomers with a degree of polymerization of similar to 200 are obtained using Grubbs second-generation catalyst. All polymer samples show the following phase sequence: I - SmA* - SmC* Glass. X-ray analysis of polymer powder samples demonstrates the desired layer shrinkage at the SmA* - SmC* transition. The polymers form well-aligned fibers by pulling from the isotropic melt, and X-ray analysis of fibers in the SmA* phase shows that in the bulk of the fiber the layers are oriented perpendicular to the fiber axis, while at the surfaces there appears to be a thin sheath where the layers are parallel to the fiber/air interface. The desired layer shrinkage with tilt at the SmA* - SmC* transition in these fibers is seen as well, and in the SmC* phase the fibers exhibit an interesting conical chevron layer structure. Electro-optic investigation of aligned thin films of the polymer, prepared from quenched fiber glasses using a novel technique, exhibit a large electroclinic effect, with substantial degradation of alignment quality upon field-induced tilt. This degradation in alignment quality, coupled with the layer shrinkage at the SmA* - SmC* transition demonstrated by X-ray scattering, strongly suggests the desired layer shrinkage with electroclinic tilt is in fact occurring in the polymer films.
机译:描述了设计用于发展为机电致动器的主链近晶液晶聚合物系统的合成和表征。选择化学结构以在SmA *相中提供较大的电斜度效应,并伴随较大的层收缩(罕见的组合)。该聚合物通过液晶α,ω-二烯的无环二烯复分解聚合(ADMET)制备。使用Grubbs第一代催化剂可获得聚合度接近10-30的低聚物,而使用Grubbs第二代催化剂可获得聚合度接近200的低聚物。所有聚合物样品均显示以下相序:I-SmA *-SmC *玻璃。聚合物粉末样品的X射线分析表明,在SmA *-SmC *跃迁下具有所需的层收缩率。聚合物通过从各向同性熔体中拉出而形成排列整齐的纤维,并且对SmA *相中的纤维进行X射线分析表明,在纤维的主体中,各层的取向垂直于纤维轴,而在表面处出现成为薄的护套,其中各层平行于光纤/空气界面。在这些纤维中,也可以看到在SmA *-SmC *过渡处具有倾斜度的所需层收缩,并且在SmC *相中,纤维表现出有趣的圆锥形V形层结构。使用新型技术由淬火纤维玻璃制备的聚合物取向薄膜的电光研究显示出大的电斜效应,并且场致倾斜会严重降低取向质量。取向质量的这种降低,再加上X射线散射显示的SmA *-SmC *跃迁处的层收缩,强烈表明实际上在聚合物薄膜中发生了具有电斜率的所需层收缩。

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