Basicity-based screening of aniline derivative for composite proton exchange membranes

苯胺 聚苯胺 材料科学 Zeta电位 直接甲醇燃料电池 高分子化学 化学工程 甲醇 电导率 电化学 聚合物 化学 复合材料 物理化学 有机化学 纳米技术 生物化学 电极 工程类 纳米颗粒 阳极 聚合
作者
Vinay K. Sachan,A. Michael Rajesh,Niharika Panday,Rajaram K. Nagarale,Prashant K. Bhattacharya
出处
期刊:Journal of Applied Polymer Science [Wiley]
卷期号:133 (39) 被引量:2
标识
DOI:10.1002/app.43978
摘要

The aim of this study was to find a suitable aniline derivative to develop composite sulfonated poly(ether ether ketone) (SPEEK) membranes and detail evaluation of their physico- and electrochemical properties. The hypothesis was high basicity of the aniline derivatives could form good composite membranes with better physicochemical and electrochemical properties. To assess the basicity we measured the zeta potentials of the polymers and correlated them with ion-exchange capacities, water uptakes, transport numbers, water-diffusion coefficients, conductivities, and methanol permeabilities. The obtained values of zeta potentials at pH 7 were 6.52, −14.66, −25.17, and −28 for SPEEK/polynaphthalene (PNAPH), SPEEK/polyanisidine (PANIS), SPEEK/polyaniline (PANI), and SPEEK/polyxylindine (PXYL), respectively supports the hypothesis and strongly suggests polyaniline derivative's basicity-dependent properties. Of the four derivatives (PNAPH, PANIS, PANI, and PXYL), the SPEEK/PXYL composite membrane had the lowest methanol permeability of 1 × 10−4 cm2/s and highest proton conductivity of 161 mS/cm. These values are far better than the neat SPEEK and SPEEK/PANI composite. The suitability of SPEEK/PXYL can be explained by the high basicity of the PXYL composite membrane, which leads to the formation of effective Debye spheres, meaning that the ionic complex can interact with surrounding hydronium ions and form hydrophilic channels resulting in high proton conductivity and low methanol permeability. These results suggest that SPEEK/PXYL is a highly suitable membrane for methanol fuel cells or other electrochemical applications. © 2016 Wiley Periodicals, Inc. J. Appl. Polym. Sci. 2016, 133, 43978.
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