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首页> 外文期刊>Journal of Applied Polymer Science >High-temperature oxidation of aniline to highly ordered polyaniline-sulfate salt with a nanofiber morphology and its use as electrode materials in symmetric supercapacitors
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High-temperature oxidation of aniline to highly ordered polyaniline-sulfate salt with a nanofiber morphology and its use as electrode materials in symmetric supercapacitors

机译:苯胺高温氧化成具有纳米纤维形态的高度有序的聚苯胺硫酸盐,并将其用作对称超级电容器中的电极材料

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In this study, for the first time, aniline was oxidized by ammonium persulfate (APS) at higher temperatures without any protic acid, and APS acted as an oxidizing agent and a protonating agent. During the oxidation of aniline by APS, sulfuric acid formation occurred, and the sulfuric acid was incorporated into polyaniline (PANI) as a dopant. PANI-sulfate samples were characterized by IR spectroscopy, X-ray diffraction, and scanning electron microscopy techniques. In this methodology, a highly ordered PANI-sulfate salt (H _2SO_4) with a nanofiber morphology was synthesized. Interestingly, a PANI base was also obtained with a highly ordered structure with an agglomerated netlike nanofiber morphology. PANI-H_2SO _4 was used as an electrode material in a symmetric supercapacitor cell. Electrochemical characterization, including cyclic voltammetry (CV), charge-discharge (CD), and impedance analysis, was carried out on the supercapacitor cells. In this study, the maximum specific capacitance obtained was found to be 273 F/g at 1 mV/s. Scan rate from cyclic voltammetry and 103 F/g at 1 mA discharge current from CD measurement. Impedance measurement was carried out at 0.6 V, and it showed a specific capacitance of 73.2 F/g. The value of the specific capacitance and energy and power densities for the PANI-H_2SO_4 system were calculated from CD studies at a 5-mA discharge rate and were found to be 43 F/g, 9.3 W h/kg, and 500 W/kg, respectively, with 98-100% coulombic efficiency.
机译:在这项研究中,苯胺首次在较高温度下被过硫酸铵(APS)氧化而没有任何质子酸,而APS充当氧化剂和质子化剂。在通过APS氧化苯胺的过程中,发生硫酸形成,并将硫酸作为掺杂剂掺入聚苯胺(PANI)中。通过红外光谱,X射线衍射和扫描电子显微镜技术对PANI硫酸盐样品进行表征。在这种方法中,合成了具有纳米纤维形态的高度有序的PANI硫酸盐(H _2SO_4)。有趣的是,还获得了具有聚集的网状纳米纤维形态的高度有序结构的PANI基。 PANI-H_2SO _4用作对称超级电容器电池中的电极材料。在超级电容器电池上进行了电化学表征,包括循环伏安法(CV),充放电(CD)和阻抗分析。在这项研究中,发现在1 mV / s时获得的最大比电容为273 F / g。循环伏安法的扫描速率为103 F / g,CD测量为1 mA放电电流。阻抗测量在0.6 V下进行,显示的比电容为73.2 F / g。通过CD研究以5 mA放电速率计算出PANI-H_2SO_4系统的比电容以及能量和功率密度的值,得出的值为43 F / g,9.3 W h / kg和500 W / kg分别具有98-100%的库仑效率。

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