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基于壳聚糖/甘油-磺基琥珀酸改性蒙脱石粘土的复合聚合物电解质膜的特性与性能研究

Characteristics and performance studies of a composite polymer electrolyte membrane based on chitosan/glycerol-sulfosuccinic acid modified montmorillonite clay.

作者信息

Kedang Yohana Ivana, Priyangga Arif, Atmaja Lukman, Santoso Mardi

机构信息

Department of Chemistry, Faculty of Science, Institut Teknologi Sepuluh Nopember Surabaya 60111 Indonesia

Department of Chemistry, Agriculture Faculty, Universitas Timor Kefamenanu 85613 Indonesia.

出版信息

RSC Adv. 2022 Oct 27;12(47):30742-30753. doi: 10.1039/d2ra04560e. eCollection 2022 Oct 24.

Abstract

In this study, chitosan (CS) doped sulphosuccinic acid (SSA)-glycerol (Gly) and modified montmorillonite clay (MMT) were successfully fabricated. The membranes were prepared using the solution casting method. Analysis of morphology and topography using scanning electron microscopy (SEM) and atomic force microscopy (AFM) revealed that the composite membrane with 3 wt% MMT filler, namely CS/MMT-1, possessed the most adequate surface roughness compared to the other fabricated membranes. Furthermore, mechanical characterization of the CS/MMT-1 composite membrane showed that the membrane achieved satisfactory mechanical strength with a value of 39.23 MPa. Proton conductivity of the composite membranes increased as the temperature was increased. The proton conductivity of the CS/MMT-1 composite membrane increased from 1.75 × 10 S cm at 25 °C up to 3.57 × 10 S cm at 80 °C. The CS/MMT-1 composite membrane also exhibited a methanol permeability value that was significantly lower than that of pristine CS, namely 1.22 × 10 cm s and 12.49 × 10 cm s, respectively. The results of this study show that the fabricated composite membrane can be used as an alternative polymer electrolyte membrane (PEM) for DMFC applications.

摘要

在本研究中,成功制备了壳聚糖(CS)掺杂磺基琥珀酸(SSA)-甘油(Gly)和改性蒙脱石粘土(MMT)。采用溶液浇铸法制备薄膜。使用扫描电子显微镜(SEM)和原子力显微镜(AFM)对形态和表面形貌进行分析,结果表明,与其他制备的薄膜相比,含有3 wt% MMT填料的复合膜,即CS/MMT-1,具有最适宜的表面粗糙度。此外,CS/MMT-1复合膜的力学性能表征表明,该膜的机械强度令人满意,值为39.23 MPa。复合膜的质子传导率随温度升高而增加。CS/MMT-1复合膜的质子传导率从25℃时的1.75×10 S cm增加到80℃时的3.57×10 S cm。CS/MMT-1复合膜的甲醇渗透率值也显著低于原始CS,分别为1.22×10 cm s和12.49×10 cm s。本研究结果表明,制备的复合膜可作为直接甲醇燃料电池(DMFC)应用的替代聚合物电解质膜(PEM)。

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