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Preparation and characterization of polymer electrolyte membrane from chloroacetate chitosan/chitosan blended with epoxidized natural rubber

机译:用环氧化天然橡胶制备氯乙酸壳聚糖/壳聚糖聚合物电解质膜的制备与表征

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Chitosan-based membranes are among the most effective and efficient PEMs for fuel cells, however their low proton conductivity needs to be improved. In this study, chitosan, chloroacetate chitosan (CCS), chitosan blend with epoxidized natural rubber (ENR), and CCS with ENR blend based membranes were prepared by solution casting, crosslinked with NaOH and H2SO4, and investigated for physical, chemical, electrical and ionic properties. The functional groups were identified by ATR-FTIR spectroscopy and the peaks matched improved membrane properties. The surface roughness of the membranes was determined by AFM, and it increased with the amount of ENR. The electrical properties measured with an LCR meter showed that the CCS, CS and CS-B had the highest conductance, conductivity, capacitance and dielectric constant, while the CC510/ENR8, C510/ENR8 and C515/ENR3 showed the highest resistance and resistivity. Furthermore, the CCS gave the lowest dissipation factor, which indicates its suitability for use in a PEM. In addition, the contact angle was relatively high for CS-B, CS and CCS.
机译:基于壳聚糖的膜是燃料电池最有效和有效的PEM之一,然而它们需要改善它们的低质子电导率。在本研究中,通过溶液浇铸,与NaOH和H 2 SO 4交联,用NaOH和H 2 SO 4交联,用脱氧天然橡胶(ENR)和CCOSAN与环氧化天然橡胶(ENR)和CCS的Chotosan共混物和CCS的Chotosan混合物,并研究了物理,化学,电气和离子性质。通过ATR-FTIR光谱鉴定官能团,峰匹配改善的膜特性。膜的表面粗糙度由AFM测定,并且随着ENR的量增加。用LCR计测量的电特性显示CCS,CS和CS-B具有最高的电导率,电导率,电容和介电常数,而CC510 / ENR8,C510 / ENR8和C515 / EN3显示出最高的电阻和电阻率。此外,CCS提供了最低耗散因子,这表明其适用于PEM。另外,CS-B,CS和CCS的接触角相对较高。

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