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Effect of Sulfuric Acid on the Physiochemical Properties of Chitosan-PVA Blend for Direct Methanol Fuel Cell

RABIRANJAN MURMUa,b, DEBASHIS ROYa, HAREKRUSHNA SUTARb, PRAGYAN SENAPATIc, SWETAK ABHISEK MOHAPATRAb

a Department of Chemical Engineering, Jadavpur University, Kolkata, West Bengal-700032, India.
b Department of Chemical Engineering, Indira Gandhi Institute of Technology Sarang, Parjang, Dhenkanal-759146, Odisha, India.
c Department of Mechanical Engineering, Siksha ‘O’ Anusandhan (Deemed to be University) Bhubaneswar-751030, Odisha, India.

* Corresponding Author: e-mail:email

Journal of Polymer Materials 2022, 39(1-2), 89-109. https://doi.org/10.32381/JPM.2022.39.1-2.6

Abstract

In this work, we have successfully cross-linked the different weight ratio of Chitosan-PVA blend with sulfuric acid. The effect of cross-linker on the properties of blends are studied by using different experimental technique. The cross-linked membrane provides higher ion exchange capacity due to the procurement of extra ionic hooping sites in the membrane. The compatibility of the blends are confirmed from the FTIR and DSC analysis. The crosslinking reaction fastening the phase transition behavior of the blends which reduces the glass transition temperature. The highly compatiblized cross-linked blend provides higher tensile strength and lower modulus at moderate temperature. The significant reduction of weight loss was observed in a cross-linked membrane which enhances thermal stability of the blend. The group which are responsible for higher methanol cross-over are consumed by the cross-linking reaction and a drastic reduction of methanol cross-over was observed. The proton conductivity of the blends are obtained by performing experiment in a four probe impedance analyzer and fitting the EIS data in an equivalent circuit model. At moderate temperature, the cross-linked membrane provides higher proton conductivity than the pure membrane and the proton transport was controlled by Grotthus mechanism. The cross-linked membrane provides higher proton conductivity and membrane selectivity which is beneficial for DMFC design.

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APA Style
MURMU, R., ROY, D., SUTAR, H., SENAPATI, P., MOHAPATRA, S.A. (2022). Effect of sulfuric acid on the physiochemical properties of chitosan-pva blend for direct methanol fuel cell. Journal of Polymer Materials, 39(1-2), 89-109. https://doi.org/10.32381/JPM.2022.39.1-2.6
Vancouver Style
MURMU R, ROY D, SUTAR H, SENAPATI P, MOHAPATRA SA. Effect of sulfuric acid on the physiochemical properties of chitosan-pva blend for direct methanol fuel cell. J Polym Materials . 2022;39(1-2):89-109 https://doi.org/10.32381/JPM.2022.39.1-2.6
IEEE Style
R. MURMU, D. ROY, H. SUTAR, P. SENAPATI, and S.A. MOHAPATRA, “Effect of Sulfuric Acid on the Physiochemical Properties of Chitosan-PVA Blend for Direct Methanol Fuel Cell,” J. Polym. Materials , vol. 39, no. 1-2, pp. 89-109, 2022. https://doi.org/10.32381/JPM.2022.39.1-2.6



cc Copyright © 2022 The Author(s). Published by Tech Science Press.
This work is licensed under a Creative Commons Attribution 4.0 International License , which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
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