Eelkema Rienk, Pollard Michael M, Katsonis Nathalie, Vicario Javier, Broer Dirk J, Feringa Ben L
Department of Organic and Molecular Inorganic Chemistry, Stratingh Institute, University of Groningen, Nijenborgh 4, 9747 AG Groningen, The Netherlands.
J Am Chem Soc. 2006 Nov 8;128(44):14397-407. doi: 10.1021/ja065334o.
In this paper an unprecedented rotational reorganization of cholesteric liquid crystalline films is described. This rotational reorganization results from the conversion of a chiral molecular motor dopant to an isomer with a different helical twisting power, leading to a change in the cholesteric pitch. The direction of this reorganization is correlated to the sign of the change in helical twisting power of the dopant. The rotational reorganization of the liquid crystalline film was used to rotate microscopic objects 4 orders of magnitude larger than the bistable dopants in the film, which shows that molecular motors and switches can perform work. The surface of the doped cholesteric liquid crystalline films was found to possess a regular surface relief, whose periodicity coincides with typical cholesteric polygonal line textures. These surface features originate from the cholesteric superstructure in the liquid crystalline film, which in turn is the result of the presence of the chiral dopant. As such, the presence of the dopant is expressed in these distinct surface structures. A possible mechanism at the origin of the rotational reorganization of liquid crystalline films and the cholesteric surface relief is discussed.
本文描述了胆甾相液晶薄膜前所未有的旋转重排。这种旋转重排源于手性分子马达掺杂剂向具有不同螺旋扭曲能力的异构体的转变,导致胆甾相螺距发生变化。这种重排的方向与掺杂剂螺旋扭曲能力变化的符号相关。液晶薄膜的旋转重排被用于旋转比薄膜中的双稳态掺杂剂大4个数量级的微观物体,这表明分子马达和开关可以做功。发现掺杂胆甾相液晶薄膜的表面具有规则的表面起伏,其周期性与典型的胆甾相多边形线织构一致。这些表面特征源于液晶薄膜中的胆甾相超结构,而这又是手性掺杂剂存在的结果。因此,掺杂剂的存在通过这些独特的表面结构得以体现。本文还讨论了液晶薄膜旋转重排和胆甾相表面起伏起源的一种可能机制。