Study of the humidity effect on the mechanical properties of PVOH+H3PO2/TiO2 proton exchange membranes

IF 0.3 Q4 ENGINEERING, MULTIDISCIPLINARY UIS Ingenierias Pub Date : 2022-10-31 DOI:10.18273/revuin.v21n4-2022006
Nadia Combarizao, Jesus Evelio Diosa-Astaiza, Diego Peña-Lara
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Abstract

The elastic modulus of polymeric membranes based on PVOH + H3PO2 + TiO2 was studied as a function of relative humidity (%RH) and the volumetric fraction of water. Tensile stress-strain tests (nominal stress) were performed to determine Young's modulus, yield strength, break stress, and strain stress at a constant speed of 10 mm/min. The membrane’s acid concentration was kept constant at the molar concentration of high proton conduction P/OH = 0.3, and they were separated into two test groups, 5 wt. %TiO2 fillers, and without TiO2. For relative humidity between 8 and 94% RH, the membranes with TiO2 show an improvement in the elastic modulus concerning those without TiO2 doping, but they have no significant difference at 100% RH, under a confidence level of 95%. In general, the data analysis indicates that the mechanical properties and the electrical properties of the membranes previously reported are directly related to the absorption of water contained in the hydrophilic groups that expand during swelling. In contrast, the hydrophobic solid-like polymer backbone and the TiO2 nanoparticle fillers maintain structural stability.
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湿度对PVOH+H3PO2/TiO2质子交换膜力学性能影响的研究
研究了基于PVOH+H3PO2+TiO2的聚合物膜的弹性模量作为相对湿度(%RH)和水的体积分数的函数。进行拉伸应力-应变试验(标称应力),以确定杨氏模量、屈服强度、断裂应力和10mm/min恒定速度下的应变应力。膜的酸浓度在高质子传导P/OH=0.3的摩尔浓度下保持恒定,并且将它们分为两个测试组,5wt.%TiO2填料和不含TiO2。对于8和94%RH之间的相对湿度,与未掺杂TiO2的膜相比,含有TiO2的膜显示出弹性模量的改善,但在95%的置信水平下,它们在100%RH下没有显著差异。通常,数据分析表明,先前报道的膜的机械性能和电性能与亲水基团中所含的水的吸收直接相关,亲水基团在溶胀过程中膨胀。相反,疏水性类固体聚合物骨架和TiO2纳米粒子填料保持结构稳定性。
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来源期刊
UIS Ingenierias
UIS Ingenierias ENGINEERING, MULTIDISCIPLINARY-
自引率
33.30%
发文量
27
审稿时长
12 weeks
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