首页> 外文期刊>Advance journal of food science and technology >Synthesis and Electrochemical Characterization of Polypyrrole/Sodium p-Toluenesulfonate Biofilms Supported on Cassava Starch Conductive Polymers for Applications in Electrical Charge Accumulators
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Synthesis and Electrochemical Characterization of Polypyrrole/Sodium p-Toluenesulfonate Biofilms Supported on Cassava Starch Conductive Polymers for Applications in Electrical Charge Accumulators

机译:木薯淀粉导电聚合物上负载的聚吡咯/对甲苯磺酸钠生物膜的合成及电化学表征

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The aim of this study is to evaluate how the number of dopants in the cassava starch polymer and the oxidation potential of the cathode influence the electrical energy accumulation properties. Materials are synthesized by two stages: In the stage I, synthesis of the conductive polymer was performed from cassava starch, plasticizers and lithium perchlorate; later, in the stage II, salt-doped polypyrrole was electrochemically synthesized. Sodium p-toluenesulfonate and lithium perchlorate were used as doping salts. Characterization of materials were performed by Electrochemical Impedance Spectroscopy (EIS) and cyclic voltammetry. The best results were obtained for assays 1 and 4 constituted by1.5 g of starch and 0.5 V for the cathode and 3 g of starch and 0.7 V for the cathode, respectively. Respective specific charge capacities and specific energies were 3.765×10-4 Ah/kg and 3.477×10-5 Wh/kg for the assay 1 and 2.234×10-4 Ah/kg and 9.095×10-5 Wh/kg for the assay 4. These responses are associated with a higher values of electrical conductivity for the assay 1 and 4 by EIS, favoring the mobility of the charges within the materials; Finally, the stability of assay voltammograms indicates how their properties can be maintained at the time.
机译:这项研究的目的是评估木薯淀粉聚合物中掺杂剂的数量和阴极的氧化电位如何影响电能的积累特性。通过两个阶段来合成材料:在阶段I中,由木薯淀粉,增塑剂和高氯酸锂合成导电聚合物。随后,在第二阶段,电化学合成了盐掺杂的聚吡咯。对甲苯磺酸钠和高氯酸锂用作掺杂盐。材料的表征通过电化学阻抗谱(EIS)和循环伏安法进行。分别由1.5 g淀粉和0.5 V阴极和3 g淀粉和0.7 V阴极组成的测定1和4获得了最佳结果。测定1的比充电容量和比能量分别为3.765×10-4 Ah / kg和3.477×10-5 Wh / kg和测定为2.234×10-4 Ah / kg和9.095×10-5 Wh / kg 4.这些响应与EIS分析1和4的较高电导率值有关,有利于电荷在材料中的迁移。最后,测定伏安图的稳定性表明了当时如何保持其特性。

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