Kanazawa A, Ikeda T, Abe J
Chemical Resources Laboratory, Tokyo Institute of Technology, 4259 Nagatsuta, Midori-ku, Yokohama 226-8503, Japan.
J Am Chem Soc. 2001 Feb 28;123(8):1748-54. doi: 10.1021/ja003302+.
Polar order in the phosphonium liquid crystal thin films, which are composed of two-dimensional ion-pair-based domains separated by the insulating hydrocarbon layers, was probed by second harmonic generation (SHG) analysis. Despite the ordinary amphiphilic self-assemblies containing no pi-electron moieties, the solid-state thin films retaining a smectic layer structure showed clearly an SHG activity, while the disordered films without the layer structure were not active at all for the SHG. It was found that the multilayer structure plays a crucial role for the SHG from the phosphonium thin films and the ionic layers act as an SHG-active site. The most significant characteristic of this system is to possess an ability to control SHG intensity electrically. The efficiency of the SHG process in the thin-film assemblies was enhanced by applying an external electric field parallel to the layer plane. Furthermore, through evaluation of thermal stability of the sample films, it was revealed that the SHG signals were detected only in the solid-state temperature range and the disappearance of the SHG occurs earlier than the solid-to-liquid crystalline phase transition. These results demonstrated that the origin of polar order in the phosphonium thin films is due to in-plane noncentrosymmetric arrangement (ferroelectric ordering) of ion pairs as an electric dipole, that is, dipole symmetry in an ionic layer.
通过二次谐波产生(SHG)分析对由绝缘烃层分隔的二维离子对基域组成的鏻液晶薄膜中的极性序进行了探测。尽管普通的两亲性自组装体不含π电子部分,但保留近晶层结构的固态薄膜显示出明显的SHG活性,而没有层结构的无序薄膜对SHG完全没有活性。研究发现,多层结构对鏻薄膜的SHG起着关键作用,离子层充当SHG活性位点。该系统最显著的特点是具有电控制SHG强度的能力。通过施加平行于层平面的外部电场,提高了薄膜组件中SHG过程的效率。此外,通过评估样品薄膜的热稳定性,发现仅在固态温度范围内检测到SHG信号,并且SHG的消失早于固-液晶相转变。这些结果表明,鏻薄膜中极性序的起源是由于离子对作为电偶极的面内非中心对称排列(铁电有序),即离子层中的偶极对称性。