Serrano JL, Sierra T
Quimica Organica, Facultad de Ciencias-Instituto de Ciencia de Materiales de Aragon, Universidad de Zaragoza-C.S.I.C., Spain.
Chemistry. 2000 Mar 3;6(5):759-66. doi: 10.1002/(sici)1521-3765(20000303)6:5<759::aid-chem759>3.0.co;2-t.
Chiral columnar liquid crystals have recently appeared as a promising new type of ferroelectric materials. To date, all the columnar liquid crystals that have been reported to show ferroelectric switching consist of organic compounds. However, metal-containing liquid crystals open this field to a significant number of new structures and offer the possibility of adding to the ferroelectric behavior other properties inherent to the presence of metals in the structure, such as magnetism, as well as the use of new methods of characterization (EPR, synchrotron radiation, etc.). The potential of columnar metal-containing liquid crystals as ferroelectric materials has been demonstrated even though only a few organic columnar ferroelectric liquid crystals have been described. As a first approach to this type of material, this concepts article describes the results obtained with chiral metal beta-diketonates that show ferroelectric switching in the columnar mesophase. It has been shown that these materials have a helical columnar arrangement in the mesomorphic state, and a chiral superstructure has been proposed from circular dichroism studies. This type of supramolecular structure plays a fundamental role in the ferroelectric properties of these compounds. The discussion is mainly focused on the strategy employed for the molecular design, and on the interpretation of the mesophase structure and the electrooptic effect. The use of a diverse range of techniques, both those commonly used in the field of liquid crystals and those that are more specific will be highlighted, and the principles of these specific techniques are summarized together with a justification of their applicability to this study.
手性柱状液晶最近已成为一种很有前景的新型铁电材料。迄今为止,所有据报道显示铁电开关特性的柱状液晶均由有机化合物组成。然而,含金属的液晶为大量新结构开辟了这一领域,并提供了在铁电行为中加入结构中金属存在所固有的其他特性(如磁性)的可能性,以及使用新的表征方法(电子顺磁共振、同步辐射等)。尽管仅描述了少数有机柱状铁电液晶,但含金属柱状液晶作为铁电材料的潜力已得到证明。作为对这类材料的初步研究,这篇概念文章描述了在手性金属β - 二酮配合物中获得的结果,这些配合物在柱状中间相中显示出铁电开关特性。已表明这些材料在介晶态具有螺旋柱状排列,并且通过圆二色性研究提出了一种手性超结构。这种超分子结构在这些化合物的铁电性质中起着基本作用。讨论主要集中在分子设计所采用的策略,以及中间相结构和电光效应的解释上。将突出使用各种技术,包括液晶领域常用的技术和更具特异性的技术,并总结这些特定技术的原理以及它们适用于本研究的理由。