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Proton and deuteron NMR study of PTFE ionomer membranes

Abstract

Proton and deuteron NMR have been conducted to investigate the ionic motion in perfluorinated ionomer membranes from Dow Chemical (XUS) and DuPont (Nafion{sup R}). Two proton relaxation peaks were found in the XUS specimen absorbed with H{sub 2}O. The major (narrow) peak presented a spin-lattice relaxation time (T{sub 1}) of 107 ms while the minor (broader) one gave much longer T{sub 1}. While the former was attributed to the water molecules involved in restricted motion, the latter was expected to be associated with the protons located in the vicinity of the sulfonate groups. Similar to the previous results from the others, only a single peak was detected in Nafion{sup R} in {sup 1}H spectra, indicating that the protons in the different environments were engaging rapid exchange within NMR time scale. In contrast to the inverse proportion dependence of the linewidth on the water sorption in Nafion{sup R}, the major line of the XUS membrane exhibited insensitive linewidth dependence on the variation of H{sub 2}O concentration. The difference was attributed to the existence of narrow breaths of the pores in XUS sample, such that free water contribution to the enhancement of proton mobility was limited. The {sup 2}H spectra of Nafion{sup  More>>
Authors:
Xu, G; Pak, Y S [1] 
  1. Dept. of Materials Science, McMaster Univ., Hamilton, Ontario (Canada)
Publication Date:
Feb 01, 1992
Product Type:
Journal Article
Reference Number:
NLF-92-001486; EDB-92-159202
Resource Relation:
Journal Name: Solid State Ionics; (Netherlands); Journal Volume: 50:3/4
Subject:
36 MATERIALS SCIENCE; 30 DIRECT ENERGY CONVERSION; POLYTETRAFLUOROETHYLENE; MEMBRANES; NUCLEAR MAGNETIC RESONANCE; CELL MEMBRANES; CHEMICAL SHIFT; DEUTERONS; HEAVY WATER; HYDROGEN IONS 1 PLUS; LINE WIDTHS; RELAXATION TIME; SPIN-LATTICE RELAXATION; SULFONATES; TEMPERATURE DEPENDENCE; WATER; CATIONS; CELL CONSTITUENTS; CHARGED PARTICLES; FLUORINATED ALIPHATIC HYDROCARBONS; HALOGENATED ALIPHATIC HYDROCARBONS; HYDROGEN COMPOUNDS; HYDROGEN IONS; IONS; MAGNETIC RESONANCE; ORGANIC COMPOUNDS; ORGANIC FLUORINE COMPOUNDS; ORGANIC HALOGEN COMPOUNDS; ORGANIC POLYMERS; ORGANIC SULFUR COMPOUNDS; OXYGEN COMPOUNDS; POLYETHYLENES; POLYMERS; POLYOLEFINS; RELAXATION; RESONANCE; 360604* - Materials- Corrosion, Erosion, & Degradation; 300503 - Fuel Cells- Materials, Components, & Auxiliaries
OSTI ID:
7017959
Country of Origin:
Netherlands
Language:
English
Other Identifying Numbers:
Journal ID: ISSN 0167-2738; CODEN: SSIOD
Submitting Site:
NLF
Size:
Pages: 339-343
Announcement Date:
Nov 01, 1992

Citation Formats

Xu, G, and Pak, Y S. Proton and deuteron NMR study of PTFE ionomer membranes. Netherlands: N. p., 1992. Web. doi:10.1016/0167-2738(92)90238-K.
Xu, G, & Pak, Y S. Proton and deuteron NMR study of PTFE ionomer membranes. Netherlands. https://doi.org/10.1016/0167-2738(92)90238-K
Xu, G, and Pak, Y S. 1992. "Proton and deuteron NMR study of PTFE ionomer membranes." Netherlands. https://doi.org/10.1016/0167-2738(92)90238-K.
@misc{etde_7017959,
title = {Proton and deuteron NMR study of PTFE ionomer membranes}
author = {Xu, G, and Pak, Y S}
abstractNote = {Proton and deuteron NMR have been conducted to investigate the ionic motion in perfluorinated ionomer membranes from Dow Chemical (XUS) and DuPont (Nafion{sup R}). Two proton relaxation peaks were found in the XUS specimen absorbed with H{sub 2}O. The major (narrow) peak presented a spin-lattice relaxation time (T{sub 1}) of 107 ms while the minor (broader) one gave much longer T{sub 1}. While the former was attributed to the water molecules involved in restricted motion, the latter was expected to be associated with the protons located in the vicinity of the sulfonate groups. Similar to the previous results from the others, only a single peak was detected in Nafion{sup R} in {sup 1}H spectra, indicating that the protons in the different environments were engaging rapid exchange within NMR time scale. In contrast to the inverse proportion dependence of the linewidth on the water sorption in Nafion{sup R}, the major line of the XUS membrane exhibited insensitive linewidth dependence on the variation of H{sub 2}O concentration. The difference was attributed to the existence of narrow breaths of the pores in XUS sample, such that free water contribution to the enhancement of proton mobility was limited. The {sup 2}H spectra of Nafion{sup R} were found to possess a doublet, due to nuclear quadrupolar interaction. Dow (XUS) membrane treated in at 100% relative humidity (RH) D{sub 2}O presented a single peak with the linewidth insensitive to the amount of heavy water absorbed. An additional rise emerged on the ''shoulder'' of this single peak when treated at 33% RH. It is concluded that XUS membrane does not provide strong hydrogen bonding to eliminate the rapid motion average over the nuclear quadrupole interaction. (orig.).}
doi = {10.1016/0167-2738(92)90238-K}
journal = []
volume = {50:3/4}
journal type = {AC}
place = {Netherlands}
year = {1992}
month = {Feb}
}