Otani Taketo, Araoka Fumito, Ishikawa Ken, Takezoe Hideo
Department of Organic and Polymeric Materials, Tokyo Institute of Technology, 2-12-1-S8-42, O-okayama, Meguro-ku, Tokyo 152-8552, Japan.
J Am Chem Soc. 2009 Sep 2;131(34):12368-72. doi: 10.1021/ja904447b.
Chirality in a mixture system consisting of bent-core 1,3-phenylene bis[4-(4-8-alkoxyphenyliminomethyl)benzoates] (P8-O-PIMB) and rod-like n-pentyl-cyanobiphenyl (5CB) molecules has been studied. Precise circular dichroism (CD) spectra using thin sample cells indicate mainly two characteristics: (1) the origin of CD signals is due to chiral-segregated bent-core molecules in the B(4) phase, where 5CB is in the isotropic phase; (2) the enhanced CD signal is detected in the B(X) phase, where 5CB is in the nematic phase. These results suggest that 5CB molecules are embedded in the network of helical nanofilaments formed by P8-O-PIMB and form helical superstructure with the same handedness as the helical nanofilaments in the B(X) phase, resulting in the giant CD signals.
对由弯曲核1,3 - 亚苯基双[4 - (4 - 8 - 烷氧基苯基亚氨基甲基)苯甲酸酯](P8 - O - PIMB)和棒状正戊基氰基联苯(5CB)分子组成的混合体系中的手性进行了研究。使用薄样品池的精确圆二色性(CD)光谱主要表明两个特征:(1)CD信号的起源是由于在B(4)相中手性分离的弯曲核分子,其中5CB处于各向同性相;(2)在B(X)相中检测到增强的CD信号,其中5CB处于向列相。这些结果表明,5CB分子嵌入由P8 - O - PIMB形成的螺旋纳米丝网络中,并与B(X)相中的螺旋纳米丝形成相同手性的螺旋超结构,从而产生巨大的CD信号。