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Correlation between the proton conductivity and diffusion coefficient of sulfonic acid functionalized chitosan and Nafion composites via impedance spectroscopy measurements
被引:0
|作者:
I. Ressam
M. Lahcini
A. Belen Jorge
H. Perrot
O. Sel
机构:
[1] Sorbonne Universités,Laboratoire Interfaces et Systèmes Électrochimiques
[2] UPMC University Paris 06,Faculté des Sciences et Techniques, Laboratoire Chimie Organométallique et Macromoléculaire – Matériaux Composites
[3] CNRS,Materials Research Institute, School of Engineering and Materials Science
[4] Cadi Ayyad Université,undefined
[5] Queen Mary University of London,undefined
来源:
Ionics
|
2017年
/
23卷
关键词:
Diffusion coefficient;
Proton conductivity;
Impedance spectroscopy;
Sulfonic acid functionalized chitosan;
Nafion composites;
D O I:
暂无
中图分类号:
学科分类号:
摘要:
Electrochemical Impedance Spectroscopy (EIS) was employed to estimate the global transverse proton diffusion coefficient, DH+, in sulfonic acid functionalized sustainable chitosan (CS-SO3H)/Nafion composite films. In contrast to conventional conductivity measurements, EIS measurements were performed at room temperature with a film/liquid interface. In this configuration, the measure of the bulk proton transport is correlated to the DH+ of the membranes which is close to 1.1 × 10−6 cm2 s−1 and 0.33 × 10−6 cm2 s−1 with and without CS-SO3H, respectively. These DH+ values permitted the proton conductivity (σH+) ratio (∼3.9) between the Nafion/CS-SO3H composite and pristine Nafion films to be estimated by using the Nernst-Einstein relationship. This ratio presents a good agreement with that obtained for the σH+ of bulk membranes (∼3.2) measured at 30 °C and 90% RH. The agreement between the σH+ ratios validates our methodology for DH+ estimation by EIS and suggests that the more than three times enhanced σH+\documentclass[12pt]{minimal}
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\begin{document}$$ {\sigma}_H^{+} $$\end{document} is governed by the ∼3 times higher DH+ in the presence of CS-SO3H.
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页码:2221 / 2227
页数:6
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