| Literature DB >> 32910541 |
Sheng-Yi Zhuang1, Ying Cheng1, Qian Zhang2, Shuo Tong2, Mei-Xiang Wang2.
Abstract
i-Corona[3]arene[3]tetrazines were synthesized from the nucleophilic aromatic substitution reaction of resorcinol and its derivatives with 3,6-dichlorotetrazine in a one-pot fashion under mild conditions. All of the resulting macrocycles adopted 1,3,5-alternate conformation irrespective of the nature of the substituents on both upper- and lower-rims. i-Corona[3]arene[3]tetrazine was found to self-regulate its macrocyclic conformation and cavity to recognize anions with binding constants spanning from 26 M-1 to 2.2×103 M-1 depending on the structure of the anions. The selective binding resulted from a significant interdependent and synergistic effect between multiple tetrazine π/anion and Caryl -H/anion hydrogen bond interactions. Taking advantage of synergistic effect revealed, a cyanobenzene-embedded i-corona[3]arene[3]tetrazine was designedly synthesized and highly selective and very strong affinity toward nitrate with a binding constant of 2.2×105 M-1 was achieved.Entities:
Keywords: anion recognition; anion-π interactions; corona[6]arene; hydrogen bonding; macrocycles
Year: 2020 PMID: 32910541 DOI: 10.1002/anie.202008997
Source DB: PubMed Journal: Angew Chem Int Ed Engl ISSN: 1433-7851 Impact factor: 15.336