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首页> 外文期刊>Journal of materials science >Electrolytic anion affected charge storage mechanisms of Fe_3O_4 flexible thin film electrode in KCl and KOH: a comparative study by cyclic voltammetry and galvanostatic charge-discharge
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Electrolytic anion affected charge storage mechanisms of Fe_3O_4 flexible thin film electrode in KCl and KOH: a comparative study by cyclic voltammetry and galvanostatic charge-discharge

机译:Fe_3O_4柔性薄膜电极在KCl和KOH中的电解阴离子影响电荷存储机理:循环伏安法和恒电流充放电的比较研究

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摘要

Effect of electrolytic anions on the charge storage mechanism and hence on the specific capacitance of Fe_3O_4 (magnetite) flexible thin film electrodes (FTFEs) has been studied. The synthesis of Fe_3O_4 on flexible stainless steel substrates has been carried out using successive ionic layer adsorption and reaction technique. 0.2 M FeCl_3 and 0.1 M NaOH aqueous solutions were used as cationic and anionic sources respectively. X-ray diffraction pattern of the FTFE shows peaks at angles 2θ = 43.64° and 44.54° indicating the formation of orthorhombic Fe_3O_4 crystals of average size 10.25 nm. The scanning electron microscopic (SEM) image of FTFE shows irregularly stacked thin layers of interconnected nanograins. Surface wettability investigation concluded the hydrophilic nature of the prepared electrodes, as the measured contact angle was 10.5°. Thickness of the thin film observed by SEM cross section is ~267 nm. Cyclic voltammetric (CV) analyses substantiated that depending on the existence of electrolytic anion, the electrode stores charge either by physisorption-desorption or by redox reactions. FTFE shows maximum current hence the specific capacitance in KOH is more than SC in KCl. The observed maximum specific capacitance (SC) in 1 M aqueous solution of KCl was 206.53 F g~(−1) and that in 1 M aqueous solution of KOH was 542.21 F g~(−1) at 100 mV s~(−1). The galvanostatic charge-discharge analyses shows that the electrochemical performance of FTFE in KOH is better than that in KCl. The observed values of SCs at current density 1 mA cm~(−2) in KCl and KOH were 281.22 and 487.84 F g~(−1) respectively, which are nearly same as those given by the CV.
机译:研究了电解质阴离子对电荷存储机理的影响,从而对Fe_3O_4(磁铁矿)柔性薄膜电极(FTFEs)的比电容的影响。已经使用连续的离子层吸附和反应技术在柔性不锈钢基底上合成了Fe_3O_4。 0.2 M FeCl_3和0.1 M NaOH水溶液分别用作阳离子和阴离子源。 FTFE的X射线衍射图显示在2θ= 43.64°和44.54°角处出现峰,表明形成了平均尺寸为10.25 nm的正交晶体Fe_3O_4晶体。 FTFE的扫描电子显微镜(SEM)图像显示了不规则堆叠的互连纳米颗粒薄层。表面润湿性研究总结出所制备电极的亲水性,因为测得的接触角为10.5°。通过SEM截面观察到的薄膜的厚度为〜267nm。循环伏安法(CV)分析证实,取决于电解质阴离子的存在,电极通过物理吸附-解吸或氧化还原反应存储电荷。 FTFE显示最大电流,因此KOH中的比电容大于KCl中的SC。在100 mV s〜(−1)下,在1 M的KCl水溶液中观察到的最大比电容(SC)为206.53 F g〜(-1),在1 M的KOH水溶液中观察到的最大比电容为542.21 F g〜(-1) )。恒电流充放电分析表明,FTFE在KOH中的电化学性能优于KCl。在KCl和KOH中电流密度为1 mA cm〜(-2)时,SC的观测值分别为281.22和487.84 F g〜(-1),与CV给出的值几乎相同。

著录项

  • 来源
    《Journal of materials science 》 |2017年第16期| 11755-11761| 共7页
  • 作者单位

    School of Physical Sciences, Solapur University, Solapur, M.S., India;

    School of Physical Sciences, Solapur University, Solapur, M.S., India;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
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