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The Formation and Dynamics of Proton Wires in Channel Environments

Biophysical JournalPublished 1 April 2001Open access
Mark L. Brewer, Udo W. Schmitt, Gregory A. Voth
Citations195
SJR quartileQ1
SJR score1.11
SNIP0.82
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TL;DR

It is found that when the aqueous proton systems are sufficiently constricted there is a substantial increase in the diffusion of the excess proton charge accompanied by a decrease in the diffraction of water molecules along the channel.

Abstract

By virtue of an accurate interaction model, the equilibrium and dynamical properties of an excess proton in aqueous systems are studied, in which the water and excess proton are confined to hydrophobic cylindrical channels. Solvation structures of the excess proton and its mobility along the channel are considered as a function of the channel radius. It is found that when the aqueous proton systems are sufficiently constricted there is a substantial increase in the diffusion of the excess proton charge accompanied by a decrease in the diffusion of water molecules along the channel. Such systems present clear evidence for the possible existence of "proton wires."

Keywords

Biochemistry, Genetics and Molecular BiologyPhysics and Astronomy