Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
5385931 | Chemical Physics Letters | 2009 | 8 Pages |
Abstract
Classical molecular dynamics simulations with a polarizable force field indicate two major structural motifs for the aqueous bulk solvation of OHâ: a four- and a five-coordinated solvent hydrogen bond donor to OHâ in addition to a weak solvent hydrogen bond acceptor by OHâ. A two-step mechanism for the reorientation of OHâ in water is proposed: first, the reorientation of OHâ is initiated by the coupled translation with the water molecules in its first solvation shell; second, the OHâ relaxes to the minimum energy configuration. The first step is the rate-limiting one for this mechanism.
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Authors
Xiuquan Sun, Soohaeng Yoo, Sotiris S. Xantheas, Liem X. Dang,