...
首页> 外文期刊>Journal of inorganic and organometallic polymers and materials >An Investigation on the Supercapacitive Performance of CuCo_2O_4/Polyaniline, a Nanocomposite of Spinel Structured Transition Binary Metal Oxide and Conducting Polymer, with a Special Focus on Bonding and Electron Density Distribution Through MEM
【24h】

An Investigation on the Supercapacitive Performance of CuCo_2O_4/Polyaniline, a Nanocomposite of Spinel Structured Transition Binary Metal Oxide and Conducting Polymer, with a Special Focus on Bonding and Electron Density Distribution Through MEM

机译:Cuco_2O_4 /聚苯胺,尖晶石结构化氧化二元金属氧化物和导电聚合物的纳米复合材料的超级电容性能研究,特别关注粘合和电子密度分布通过MEM

获取原文
获取原文并翻译 | 示例
           

摘要

CuCo2O4 nanomaterial was synthesized by cost effective, time saving combustion route and a composite material CuCo2O4/PANI was prepared by physical blending. X-ray diffractometer studies were used to characterize the structural properties of synthesized nanoparticles thereby confirming the appearance of cubic spinel phase with the crystallite size ranging from 10 to 40 nm. Rietveld refinement method was used to derive density of nanoparticles, unit cell volume and other parameters. Fourier transform infrared spectroscopy was used to confirm the functional groups as well as the presence of vibrations in the samples which is in accordance with XRD results. The distribution of electron density and chemical bonding were studied through maximum entropy method. The changes in these factors in pure and composite have demonstrated improved electrochemical behavior of the latter. The crystallite size and lattice strain were calculated by Williamson-Hall (W-H) analysis, and size-strain plot method (SSP) that was in correlation with that of Scherrer method. Findings from SSP method, Scherrer and HR-TEM results were well matched. The morphology of synthesized nanoparticles of pure and composite were examined through FE-SEM and HR-TEM images. The morphological changes have proved improved electrochemical capability of the composite. The morphological observations of FE-SEM and HRTEM were in good accordance. The crystalline property of the materials is confirmed from SAED patterns of HRTEM that matched well with the XRD study. The electrochemical characterization of the samples was carried out by CV and CP observations. The composite material CuCo2O4/PANI exhibited a higher maximum specific capacitance of 659 F/g at 5 mV/s scan rate in comparison with 515 F/g exhibited by pure CuCo2O4 as calculated from CV. The higher performance of the composite material is also evident by the electrochemical impedance study, as the resistance was lower than the pure. The ESR of the composite was 3.52 V and that of pure was 5.93 V, as obtained from the Nyquist plot. On the basis of outcome of the results, CuCo2O4/PANI nanocomposite displays better performance when compared to the pure CuCo2O4. This has been achieved by low cost, time saving and simple synthesis method.
机译:通过成本效益,时间燃烧燃烧路线合成Cuco2O4纳米材料,通过物理混合制备Cuco2O4 / Pani的复合材料。 X射线衍射仪研究用于表征合成纳米颗粒的结构性质,从而确认立方尖晶石相的外观,其微晶尺寸范围为10至40nm。 RIETVELD改进方法用于导出纳米颗粒,单位细胞体积和其他参数的密度。傅里叶变换红外光谱用于确认官能团以及根据XRD结果的样品中的振动存在。通过最大熵方法研究了电子密度和化学键合的分布。纯和复合材料中这些因素的变化表明了后者的改善的电化学行为。通过威廉姆森 - 霍尔(W-H)分析和尺寸 - 应变图法(SSP)与Scherrer方法相关的尺寸 - 应变图法计算微晶尺寸和晶格菌株。 SSP方法的结果,Scherrer和HR-TEM结果非常匹配。通过Fe-SEM和HR-TEM图像检查纯和复合材料合成纳米颗粒的形态。形态学变化已经证明了复合材料的改善的电化学能力。 FE-SEM和HRTEM的形态学观察符合。通过与XRD研究良好匹配的HRTEM的Saed图案证实了材料的结晶性能。样品的电化学表征通过CV和CP观察来进行。复合材料Cuco2O4 / PANI以5mV / s的扫描速率为659 f / g的最大比电容,与由Cv计算的纯Cuco2O4展出的515 f / g相比。通过电化学阻抗研究,复合材料的较高性能也显而易见,因为电阻低于纯度。从奈奎斯特图中获得,复合材料的ESR为3.52V,纯度为5.93V。在结果的结果基础上,与纯Cuco2O4相比,Cuco2O4 / Pani纳米复合材料显示出更好的性能。这已经通过低成本,节省时间和简单的合成方法来实现。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号