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Role of Metals Content in Spinach in Enhancing the Conductivity and Optical Band Gap of Chitosan Films

机译:菠菜中金属含量在提高壳聚糖膜电导率和带隙中的作用

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Blend of chitosan and spinach extract has been successfully prepared using acetic acid as a solvent medium to produce chitosan-spinach films. The conductivity measurements showed that chitosan-spinach films for all ratios of 95 : 5, 90 : 10, 85 : 15, and 80 : 20 had better conductivity than the chitosan film. The optical band gap reduced with the addition of the spinach extract into chitosan. Chitosan-spinach film with the ratio of 85 : 15 gave the best electrical properties in this work with the conductivity of 3.41 × 10−6 S/m and optical band gap of 2.839 eV. SEM-EDX spectra showed the existence of potassium, phosphorus, sulphur, iron, and oxygen in chitosan-spinach films. AFM image showed that the surface morphology of the films became rougher as the spinach incorporated into chitosan. The minerals which exist in spinach extract play a role in enhancing electrical properties of chitosan film.
机译:已成功地使用乙酸作为溶剂介质制备了壳聚糖和菠菜提取物的混合物,以生产壳聚糖-菠菜薄膜。电导率的测量结果表明,壳聚糖-菠菜薄膜在比例分别为95:5、90:10、85:15和80:20的情况下比壳聚糖膜具有更好的导电性。随着菠菜提取物加入壳聚糖中,光学带隙减小。比例为85 film:15的壳聚糖-菠菜薄膜在此工作中具有最佳的电性能,电导率为3.41×10-6 S / m,光学带隙为2.839 eV。 SEM-EDX光谱显示壳聚糖-菠菜薄膜中存在钾,磷,硫,铁和氧。原子力显微镜图像表明,随着菠菜掺入壳聚糖,薄膜的表面形貌变得更粗糙。菠菜提取物中存在的矿物质在增强壳聚糖薄膜的电性能方面发挥了作用。

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