| Literature DB >> 31320538 |
Yasutomo Segawa1,2, Motonobu Kuwayama3, Yuh Hijikata2,4,5, Masako Fushimi3,2, Taishi Nishihara3,2,6, Jenny Pirillo4,5, Junya Shirasaki3, Natsumi Kubota2, Kenichiro Itami1,2,4.
Abstract
The generation of topologically complex nanocarbons can spur developments in science and technology. However, conventional synthetic routes to interlocked molecules require heteroatoms. We report the synthesis of catenanes and a molecular trefoil knot consisting solely of para-connected benzene rings. Characteristic fluorescence of a heterocatenane associated with fast energy transfer between two rings was observed, and the topological chirality of the all-benzene knot was confirmed by enantiomer separation and circular dichroism spectroscopy. The seemingly rigid all-benzene knot has rapid vortex-like motion in solution even at -95°C, resulting in averaged nuclear magnetic resonance signals for all hydrogen atoms. This interesting dynamic behavior of the knot was theoretically predicted and could stimulate deeper understanding and applications of these previously untapped classes of topological molecular nanocarbons.Entities:
Year: 2019 PMID: 31320538 DOI: 10.1126/science.aav5021
Source DB: PubMed Journal: Science ISSN: 0036-8075 Impact factor: 47.728