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![]() | Kim, Jisung; Lee, Jinhee; Kim, Woo Young; Kim, Hyungjun; Lee, Sanghwa; Lee, Hee Chul; Lee, Yoon Sup; Seo, Myungeun; Kim, Sang Youl Induction and control of supramolecular chirality by light in self-assembled helical nanostructures Journal Article Nat. Commun., 6 , pp. 6959, 2015. Abstract | BibTeX | Tags: Noncovalent interaction Self-assembly Supramolecular chirality Topological polymerization @article{Kim2015, title = {Induction and control of supramolecular chirality by light in self-assembled helical nanostructures}, author = {Jisung Kim and Jinhee Lee and Woo Young Kim and Hyungjun Kim and Sanghwa Lee and Hee Chul Lee and Yoon Sup Lee and Myungeun Seo and Sang Youl Kim}, url = {https://www.nature.com/articles/ncomms7959}, year = {2015}, date = {2015-04-23}, journal = {Nat. Commun.}, volume = {6}, pages = {6959}, abstract = {Evolution of supramolecular chirality from self-assembly of achiral compounds and control over its handedness is closely related to the evolution of life and development of supramolecular materials with desired handedness. Here we report a system where the entire process of induction, control and locking of supramolecular chirality can be manipulated by light. Combination of triphenylamine and diacetylene moieties in the molecular structure allows photoinduced self-assembly of the molecule into helical aggregates in a chlorinated solvent by visible light and covalent fixation of the aggregate via photopolymerization by ultraviolet light, respectively. By using visible circularly polarized light, the supramolecular chirality of the resulting aggregates is selectively and reversibly controlled by its rotational direction, and the desired supramolecular chirality can be arrested by irradiation with ultraviolet circularly polarized light. This methodology opens a route to ward the formation of supramolecular chiral conducting nanostructures from the self-assembly of achiral molecules.}, keywords = {Noncovalent interaction, Self-assembly, Supramolecular chirality, Topological polymerization}, pubstate = {published}, tppubtype = {article} } Evolution of supramolecular chirality from self-assembly of achiral compounds and control over its handedness is closely related to the evolution of life and development of supramolecular materials with desired handedness. Here we report a system where the entire process of induction, control and locking of supramolecular chirality can be manipulated by light. Combination of triphenylamine and diacetylene moieties in the molecular structure allows photoinduced self-assembly of the molecule into helical aggregates in a chlorinated solvent by visible light and covalent fixation of the aggregate via photopolymerization by ultraviolet light, respectively. By using visible circularly polarized light, the supramolecular chirality of the resulting aggregates is selectively and reversibly controlled by its rotational direction, and the desired supramolecular chirality can be arrested by irradiation with ultraviolet circularly polarized light. This methodology opens a route to ward the formation of supramolecular chiral conducting nanostructures from the self-assembly of achiral molecules. |