| Literature DB >> 31338912 |
Ommid Anamimoghadam1, James A Cooper1, Minh T Nguyen1, Qing-Hui Guo1, Lorenzo Mosca1, Indranil Roy1, Junling Sun1, Charlotte L Stern1, Louis Redfern1, Omar K Farha1, J Fraser Stoddart1,2,3.
Abstract
Reported here is the synthesis, solid-state characterization, and redox properties of new triangular, threefold symmetric, viologen-containing macrocycles. Cyclotris(paraquat-p-phenylene) (CTPQT6+ ) and cyclotris(paraquat-p-1,4-dimethoxyphenylene) (MCTPQT6+ ) were prepared and their X-ray single-crystal (super)structures reveal intricate three-dimensional packing. MCTPQT6+ results in nanometer-sized channels, in contrast with its parent counterpart CTPQT6+ which crystallizes as a couple of polymorphs in the form of intercalated assemblies. In the solid state, MCTPQT3(.+) exhibits stacks between the 1,4-dimethoxyphenylene and bipyridinium radical cations, providing new opportunities for the manipulation and control of the recognition motif associated with viologen radical cations. These redox-active cyclophanes demonstrate that geometry-matching and weak intermolecular interactions are of paramount importance in dictating the formation of their intricate solid-state superstructures.Entities:
Keywords: macrocycles; nanoporous materials; radicals; self-assembly; solid-state structures
Year: 2019 PMID: 31338912 DOI: 10.1002/anie.201907329
Source DB: PubMed Journal: Angew Chem Int Ed Engl ISSN: 1433-7851 Impact factor: 15.336