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Nafion membranes reinforced by cellulose nanocrystals for fuel cell applications: aspect ratio and heat treatment effects on physical properties

机译:纤维素纳米晶体增强的Nafion膜在燃料电池应用中:长径比和热处理对物理性能的影响

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摘要

This study explored the improvement of the physicochemical properties (mechanical resistance, water uptake, swelling, etc.) of Nafion membranes by cellulose nanocrystals (CNCs). These composite membranes were prepared from Ramie and Tunicate nanocrystals with respective aspect ratios of about 28 and 106. It was demonstrated that, regardless of the type of nanocrystals, increasing the cellulose weight content from 0 to 10 wt increased the water uptake and the thickness swelling and decreased the in-plane swelling of the composite membranes during water immersion. The mechanical performances of the composite membranes (tensile strength, elongation at break and Young'smodulus) were also enhanced, with the best compromise for Tunicate nanocrystals found to be 5 wt. The effect of thermal annealing up to 150 degrees C on the Nafion-Tunicate 5 wt composite was tested and compared to that of pure Nafion. With thermal annealing, a small decrease in water uptake capacity, protonic conductivity, ion exchange capacity and hydration number was observed for both membranes. At the sub-molecular level, FTIR data suggest that the heat treatment of Nafion-Tunicate membranes induces cross-linking reactions between sulfonic groups of Nafion chains and surface functional groups of CNCs, leading for example to sulfonic ester links. The exothermic peak observed by DSC can assign an increase of the crystalline phase of Nafion chains and especially in the vicinity of CNCs. All cross-linkages led to an improvement in the mechanical resistance of the membranes when thermal annealing was below 130 degrees C.
机译:本研究探讨了纤维素纳米晶(CNCs)对Nafion膜理化性能(机械阻力、吸水性、溶胀性等)的改善。这些复合膜由苎麻和被膜纳米晶体制备而成,其长宽比分别约为28和106。结果表明,无论纳米晶体的类型如何,将纤维素重量含量从0提高到10 wt%都会增加复合膜的吸水率和厚度膨胀,并减少复合膜在水浸过程中的面内膨胀。复合膜的力学性能(拉伸强度、断裂伸长率和杨氏模量)也得到了增强,发现被膜纳米晶体的最佳折衷方案为5 wt%。测试了高达150°C的热退火对Nafion-Tunicate 5 wt%复合材料的影响,并与纯Nafion进行了比较。在热退火中,观察到两种膜的吸水能力、质子电导率、离子交换能力和水合数均略有下降。在亚分子水平上,傅里叶变换红外光谱仪数据表明,Nafion-Tunate膜的热处理诱导了Nafion链的磺酸基团和CNC的表面官能团之间的交联反应,例如导致磺酸酯键。DSC观察到的放热峰可以指定Nafion链的晶相增加,特别是在CNC附近。当热退火温度低于130°C时,所有交联都导致膜的机械阻力得到改善。

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