作者
Takaya Ogawa, Hiroshi Ushiyama, Ju-Myeung Lee, Takeo Yamaguchi, Koichi Yamashita
发表日期
2011/4/7
期刊
The Journal of Physical Chemistry C
卷号
115
期号
13
页码范围
5599-5606
出版商
American Chemical Society
简介
To examine the origin of the high proton conductivity of hybrid electrolytes, composites of an inorganic grain and an organic electrolyte polymer, the reaction mechanism for proton transfer at the surface of water-adsorbed zirconium phosphate, α-Zr(HPO4)2·H2O (ZrP), has been theoretically investigated as a first step in our research. Reaction paths and activation energies, which determine the proton conductivity, are examined by quantum chemistry calculations. In particular, the effects of adsorbed water molecules and phosphate groups on the proton conductivity are analyzed by examining the interaction energies between the phosphate groups and the adsorbed water molecules, the charges of the protons and oxygen atoms and also the O−O distances along the proton-transfer paths. As a result, it has been clearly shown that the interactions between the phosphate groups at the ZrP surface and the adsorbed …
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