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Nanocomposite Polymer Electrolytes of Sodium Alginate and Montmorillonite Clay

机译:藻酸钠和蒙脱石粘土的纳米复合材料聚合物电解质

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摘要

Nanocomposite polymer electrolytes (NPEs) were synthesized using sodium alginate (Alg) and either sodium (SCa-3-Na+)- or lithium (SCa-3-Li+)-modified montmorillonite clays. The samples were characterized by structural, optical, and electrical properties. SCa-3-Na+ and SCa-3-Li+ clays’ X-ray structural analyses revealed peaks at 2θ = 7.2° and 6.7° that corresponded to the interlamellar distances of 12.3 and 12.8 Å, respectively. Alg-based NPEs X-ray diffractograms showed exfoliated structures for samples with low clay percentages. The increase of clay content promoted the formation of intercalated structures. Electrochemical Impedance Spectroscopy revealed that Alg-based NPEs with 5 wt% of SCa-3-Na+ clay presented the highest conductivity of 1.96 × 10−2 S/cm2, and Alg with 10 wt% of SCa-3-Li+ showed conductivity of 1.30 × 10−2 S/cm2, both measured at 70 °C. From UV-Vis spectroscopy, it was possible to infer that increasing concentration of clay promoted a decrease of the samples’ transmittance and, consequently, an increase of their reflectance.
机译:或锂(SCA-3-Li +)的 - - 改性蒙脱土纳米复合聚合物电解质(NPE上)是用海藻酸钠(ALG)和任一钠(SCA-3-的Na +)合成。由结构,光学,和电性能的样品进行表征。 SCA-3-Na +和SCA-3-Li +的粘土X射线结构分析,在2θ= 7.2°和6.7°的是分别对应于12.3和12.8的层间的距离,显示峰。基于ALG-NPE的X射线衍射图显示出剥离结构具有低百分比的粘土样品。粘土含量的增加促进了插结构的形成。电化学阻抗谱显示,ALG-基于NPE上与SCA-3-的Na +粘土的5%(重量)给出的1.96×10-2 S / cm 2,并且ALG用的10%(重量)的Sca-3-Li +的显示出1.30导电性的导电率最高×10-2 S / cm 2时,无论是在70℃下测量。从UV-Vis光谱,有可能推断出粘土浓度的增加促进了样本的透射率的降低,因此,它们的反射率的增加。

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