Proton Electrodynamics in Liquid Water
arXiv:1302.5048 · doi:10.1134/S1028335814030045
Abstract
The dielectric spectrum of liquid water, Hz, is interpreted in terms of diffusion of charges, formed as a result of self-ionization of HO molecules. This approach explains the Debye relaxation and the dc conductivity as two manifestations of this diffusion. The Debye relaxation is due to the charge diffusion with a fast recombination rate, , while the dc conductivity is a manifestation of the diffusion with a much slower recombination rate, . Applying a simple model based on Brownian-like diffusion, we find s and s, and the concentrations of the charge carriers, involved in each of the two processes, m and m. Further, we relate and to the total concentration of HO--OH pairs and to the pH index, respectively, and find the lifetime of a single water molecule, s. Finally, we show that the high permittivity of water results mostly from flickering of separated charges, rather than from reorientations of intact molecular dipoles.
5 pages