Proton Solvation and Transport in Hydrated Nafion

Feng, S; Voth, GA

HERO ID

1112910

Reference Type

Journal Article

Year

2011

Language

English

PMID

21510678

HERO ID 1112910
In Press No
Year 2011
Title Proton Solvation and Transport in Hydrated Nafion
Authors Feng, S; Voth, GA
Journal Journal of Physical Chemistry B
Volume 115
Issue 19
Page Numbers 5903-5912
Abstract Proton solvation properties and transport mechanisms have been studied in hydrated Nafion using the self-consistent multistate empirical valence bond (SCI-MS-EVB) method that includes the effects excess proton charge defect delocalization and Grotthuss proton hopping. It was found that sulfonate groups influence excess proton solvation, as well as the proton hydration structure, by stabilizing a more Zundel-like (H(5)O(2)(+)) structure in their first solvation shells. Hydrate proton-related hydrogen bond networks were observed to be more stable than networks with water alone. Diffusion rates, Arrhenius activation energies, and transport pathways were calculated and analyzed to characterize the nature of the proton transport. Diffusion rate analysis suggests that a proton-hopping mechanism dominates the proton transport for the studied water loading levels and that there is a clear degree of anticorrelation with the vehicular transport. The activation energy drops quickly with an increasing water content when the water loading level is smaller than ∼10 H(2)O/SO(3)(-), which is consistent with experimental observations. The sulfonate groups were also found to affect the proton hopping directions. The temperature and water content effects on the proton transport pathways were also investigated.
Doi 10.1021/jp2002194
Pmid 21510678
Wosid WOS:000290427100023
Is Certified Translation No
Dupe Override No
Comments Source: Web of Science 000290427100023
Is Public Yes
Language Text English
Is Qa No