Zeng Lixi, He Yujian, Dai Zhifeng, Wang Jian, Cao Qian, Zhang Yuliang
College of Chemistry and Chemical Engineering, Graduate University of Chinese Academy of Sciences (GUCAS), Beijing, P.R. China.
Chemphyschem. 2009 Apr 14;10(6):954-62. doi: 10.1002/cphc.200800810.
Supramolecular chirality in two configurational homoaggregates of anionic meso-tetrakis(4-sulfonatophenyl)porphyrin (TPPS) can be induced by D- and L-alanine in acidic water (see picture). The chirality can be further memorized and enforced through strong electrostatic interactions between TPPS aggregates and achiral poly(allylamine) [PAA].Supramolecular chirality in two configurational homoaggregates of anionic meso-tetrakis(4-sulfonatophenyl)porphyrin (TPPS) can be induced by D- and L-alanine (Ala) in acidic water, respectively. The induced supramolecular chirality can be further memorized and enforced, even after complete removal of Ala or in the presence of excess Ala with the opposite configuration, through strong electrostatic interactions with achiral poly(allylamine) [PAA]. The ionic chiral interactions between TPPS and Ala or PAA are characterized by means of UV/Vis absorption and circular dichroism spectrometry. Fluorescence spectroscopy and atomic force microscopy are used as complementary techniques. On the basis of the comprehensive experimental results, a possible mechanism for chiral induction, memory, and amplification of TPPS homoaggregates by chiral amino acids and achiral PAA is proposed. Thus, we demonstrate a novel strategy to realize chiral memory in supramolecular systems by polyelectrolytes through hierarchical electrostatic self-assembly.
在酸性水溶液中,阴离子型中位四(4 - 磺酸基苯基)卟啉(TPPS)的两种构型均聚物中的超分子手性可由D - 丙氨酸和L - 丙氨酸诱导产生(见图)。通过TPPS聚集体与非手性聚烯丙胺(PAA)之间强烈的静电相互作用,这种手性能够被进一步记忆并强化。在酸性水中,阴离子型中位四(4 - 磺酸基苯基)卟啉(TPPS)的两种构型均聚物中的超分子手性可分别由D - 丙氨酸(Ala)和L - 丙氨酸诱导产生。即便在完全去除丙氨酸之后,或者在存在过量相反构型丙氨酸的情况下,通过与非手性聚烯丙胺(PAA)的强烈静电相互作用,所诱导的超分子手性仍能被进一步记忆并强化。TPPS与丙氨酸或PAA之间的离子型手性相互作用通过紫外/可见吸收光谱和圆二色光谱进行表征。荧光光谱和原子力显微镜用作辅助技术。基于全面的实验结果,提出了一种由手性氨基酸和非手性PAA对手性卟啉聚集体进行手性诱导、记忆和放大的可能机制。因此,我们展示了一种通过聚电解质经分级静电自组装在超分子体系中实现手性记忆的新策略。