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Titania Nanosheets (TNS)/Sulfonated Poly Ether Ether Ketone (SPEEK) Nanocomposite Proton Exchange Membranes for Fuel Cells

机译:Titania纳米片(TNS)/磺化聚醚醚酮(SPEEK)纳米复合质子交换膜,用于燃料电池

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Sulfonated polyetheretherkelone (SPEEK)-based composite membranes containing various amounts of titania nanosheets (TNS) as inorganic filler have been prepared and investigated for proton exchange membrane applications. The SPEEK degree of sulfonation was DS = 0.58 and the TNS content was in the range 0.95-10.00 wt. %. The two-dimensional titanium oxide sheets, have been prepared as stable colloidal suspensions produced by the action of a quaternary ammonium ion, such as tetrabutylammonium, TBA~+. SPEEK/TNS composites have been prepared by casting from DMA (dimethylacetamide). The samples have been characterized in terms of thermal stability (TG/DTA, DSC), proton exchange capacity (P.E.C., by tilralion), water uptake, proton conductivity (EIS), and structural (XRD) and microstructural (SEM) features. Acid treated composites, at the lowest inorganic additive contents, exhibited improved properties in terms of proton conductivity and water uptake with respect to pure SPEEK. The best performing nanocomposite was the membrane containing only 1.67 wt.% TNS showing conductivity value of 4.14 10~(-2) Scm~(-1) at 140 °C and at 100% of relative humidity (RH), whereas pure SPEEK. membrane exhibited a value of 1.76 x 10~(-2) Scm~(-1) at the same temperature and RH conditions. The volume swelling (VS), measured at 90 °C for the composite membrane containing 1.67 wt. % TNS, was reduced by ca. 80% with respect to that of a reference SPEEK membrane. The improved electrochemical properties of TNS nanocomposites have been associated to the unique nature of the two-dimensional nano structured inorganic additive.
机译:制备了含各种量的二氧化钛纳米片(TNS)作为无机填料的基于磺化聚醚醚酮(SPEEK)的复合膜,并进行了质子交换膜应用研究。 SPEEK的磺化度为DS = 0.58,TNS含量为0.95-10.00重量%。 %。二维氧化钛片材已制备为稳定的胶体悬浮液,其是通过季铵离子(如四丁基铵,TBA +)的作用而产生的。 SPEEK / TNS复合材料是通过DMA(二甲基乙酰胺)浇铸制备的。样品已根据热稳定性(TG / DTA,DSC),质子交换容量(P.E.C.,通过tilralion),吸水率,质子传导率(EIS)和结构(XRD)和微结构(SEM)特征进行了表征。相对于纯净的SPEEK,酸处理的复合材料具有最低的无机添加剂含量,在质子传导率和吸水率方面表现出改进的性能。表现最佳的纳米复合材料是仅含有1.67 wt。%TNS的膜,在140°C和100%的相对湿度(RH)下显示出4.14 10〜(-2)Scm〜(-1)的电导率值,而纯SPEEK。在相同的温度和相对湿度条件下,膜的值为1.76 x 10〜(-2)Scm〜(-1)。在90°C下测得的含1.67 wt。 %TNS降低了约相对于参考SPEEK膜的80%。 TNS纳米复合材料电化学性能的改善与二维纳米结构无机添加剂的独特性质有关。

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