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Theoretical Studies on the Hydrogen Bond Transfer and Proton Transfer between Anamorphoses of the Dihydrated Glycine Complex
Authors:WANG Ke-Cheng  MENG Xiang-Jun  SHI Jin  LI Bing-Huan
Abstract:The conversion between anamorphoses of the dihydrated glycine complex was studied by means of B3LYP/6-31 G**. It was found that proton transfer was accompanied by hydrogen bond transfer in the process of conversion between different kinds of anamorphoses. With proton transfer, the electrostatic action was notably increased and the hydrogen-bonding action was evidently strengthened when the dihydrated neutral glycine complex converts into dihydrated zwitterionic glycine complex. The activation energy required for hydrogen bond transfer between dihydrated neutral glycine complexes is very low (6.32 kJ·mol-1); however, the hydrogen bond transfer between dihydrated zwitterionic glycine complexes is rather difficult with the required activation energy of 13.52 kJ·mol-1 due to the relatively strong electrostatic action. The activation energy required by proton transfer is at least 27.33 kJ·mol-1, higher than that needed for hydrogen bond transfer. The activation energy for either hydrogen bond transfer or proton transfer is in the bond-energy scope of medium-strong hydrogen bond, so the four kinds of anamorphoses of the dihydrated glycine complex could convert mutually.
Keywords:intermolecular interaction  B3LYP  glycine  hydrogen bond transfer  proton transfer  Complex  Glycine  Proton Transfer  Hydrogen Bond  Studies  four  mutually  scope  strong  rather  however  activation energy  complexes  electrostatic  increased  action  strengthened  neutral  zwitterionic  proton transfer
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