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Cation Translocation around Single Polyoxometalate-Organic Hybrid Cluster Regulated by Electrostatic and Cation-π Interactions.

Dong LiZhuonan LiuJie SongHui LiBaofang ZhangPanchao YinZhaoxiong Norm ZhengJames E RobertsMesfin TsigeCraig L HillTianbo Liu
Published in: Angewandte Chemie (International ed. in English) (2017)
We report herein an interesting dynamic translocation process of countercations around one polyoxometalate(POM)-organic hybrid anionic cluster at various concentrations and temperatures. It was found that both electrostatic interactions and cation-π interactions regulate the position of small countercations around single clusters. The dynamic geometry and the symmetry of the hybrid macroions are largely affected by the type of counterions, as shown by nuclear magnetic resonance (NMR) spectroscopy studies and all-atom molecular dynamics simulation. It is also shown that electrostatic interactions dominate over cation-π interactions in determining the locations of the counterions in the current system.
Keyphrases
  • molecular dynamics simulations
  • magnetic resonance
  • ionic liquid
  • molecular docking
  • magnetic resonance imaging