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首页> 外文期刊>Journal of solid state electrochemistry >Dip time-dependent SILAR synthesis and electrochemical study of highly flexible PPy-Cu(OH)2 hybrid electrodes for supercapacitors
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Dip time-dependent SILAR synthesis and electrochemical study of highly flexible PPy-Cu(OH)2 hybrid electrodes for supercapacitors

机译:浸入时间依赖性的Sill合成和电化学研究高度柔性PPY-Cu(OH)<下标> 2 混合电极的超级电容器

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摘要

Abstract The effect of dip time variations on electrochemical performance of polypyrrole (PPy)-copper hydroxide hybrid thin-film electrodes was studied well in depth. Synthesis was carried out using a successive ionic layer adsorption and reaction (SILAR) method via an aqueous route, using 0.1?M pyrrole, 0.1?M Cu(NO3)2, and H2O2. The electrochemical analysis was made by using cyclic voltammetry (CV), galvanostatic charge-discharge (GCD) analysis, and electrochemical impedance spectroscopy (EIS). Scanning electron microscopy (SEM) image of optimized electrode shows nanolamellae-like structures. The characteristic peak observed in Fourier transform infrared (FTIR) analysis at 1558?cm?1 validates the existence of PPy in hybrid electrode material, while the peaks observed at 21.5° and 44.5° in X-ray diffraction (XRD) patterns are evidence for triclinic Cu(OH)2. The observed maximum values of specific capacitance (SC), specific power (SP), specific energy (SE), and coulombic efficiency (η) of the optimized electrode are 56.05?F/g, 10.48?Wh/kg, 11.11?kW/kg, and 46.47%, respectively. For originality and value, the SILAR synthesis of PPy-Cu(OH)2 hybrid thin-film electrodes was carried out for the very first time. Synthesized electrodes showed improved surface structures and electrochemical stability than the pristine PPy electrodes which are necessary for the supercapacitive applications.
Graphical abstract
机译:<![CDATA [<标题>抽象 <帕拉ID =“PAR1”>在深度深度中研究了滴定时间变化对多吡咯(PPY) - 氢氧化合物杂交薄膜电极的影响。使用0.1μm吡咯,0.1Ω·铜(NO <下标> 3 )使用连续离子层吸附和反应(Sill)方法进行合成。 ,H <下标> 2 O <下标> 2 。通过使用循环伏安法(CV),电镀电荷(GCD)分析和电化学阻抗光谱(EIS)制备电化学分析。优化电极的扫描电子显微镜(SEM)图像显示纳米素状的结构。在傅里叶变换红外(FTIR)分析中观察到的特征峰在1558°CCM <上标>Δ1在混合电极材料中验证了PPY的存在,而在X射线衍射中观察到在21.5°和44.5°处观察到的峰值(XRD)模式是三星Cu(OH)<下标> 2 的证据。所观察到的特定电容(SC),特定功率(SP),特定能量(SE)和Coulombic效率(<强调型=“斜体”>η)的最大值为56.05?F / g,10.48?wh / kg,11.11?kw / kg和46.47%。对于原创性和值,首次进行PPY-Cu(OH)<下标> 2 混合薄膜电极的Sill合成。合成电极显示出的表面结构和电化学稳定性,其比原始的PPY电极是超级电容应用所必需的。 ara id =“par2”输出medium =“在线”> <图类别=“标准”float =“no “id =”figa“> <标题语言=”en“> 图形抽象 rocionContent>

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