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首页> 外文期刊>Ionics >CeO2-PANI-HCl and CeO2-PANI-PTSA composites: synthesis, characterization, and utilization as supercapacitor electrode materials
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CeO2-PANI-HCl and CeO2-PANI-PTSA composites: synthesis, characterization, and utilization as supercapacitor electrode materials

机译:CEO2-PANI-HCL和CEO2-PANI-PTSA复合材料:合成,表征和利用作为超级电容器电极材料

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The excellent cyclic efficiency, superior reversible charge/discharge rate, and high specific power density have made supercapacitors an important class of energy storage systems in recent time. In this study, two nano-ceria-based composites were developed to use as electrodematerials in supercapacitor applications. The composites were synthesized by combining ceria with conductive polyaniline (PANI) and doped with HCl and p-toluene sulfonic acid (PTSA). The materials were characterized by FTIR spectroscopy, SEM, XRD, and XPS techniques. Electrochemical studies were performed by cyclic voltammetry, galvanometric charge-discharge, and AC impedance spectroscopy. The CeO2-PANI doped with HCl and PTSA composites displayed ideal supercapacitor behavior showing higher capacitances up to 504 F g(-1) and 454 F g(-1), respectively, at current density of 1 A g(-1) in comparison with pristine ceria (109 F g(-1)). Both the composites exhibited excellent specific energy (up to 100.8 W h kg(-1)) as well as outstanding specific power (up to 830 W kg(-1)). These findings support the possibility of these composites for practical applicability as electrode materials in energy storage devices.
机译:优异的循环效率,卓越的可逆充电/放电率和高特定功率密度使超级电容器近时成为一类重要的能量存储系统。在该研究中,开发了两种基于纳米二氧化铈基复合材料以在超级电容器应用中用作电渗透材料。通过将二氧化铈与导电聚苯胺(PANI)组合并掺杂有HCl和对甲苯磺酸(PTSA)来合成复合材料。该材料的特征在于FTIR光谱,SEM,XRD和XPS技术。通过循环伏安法,电流电荷放电和AC阻抗光谱进行电化学研究。掺杂有HCl和PTSA复合材料的CEO2-PANI显示了理想的超级电容器,分别显示出高达504f g(-1)和454 f g(-1)的高电容,相比之下为1 a g(-1)的电流密度用原始二氧化铈(109 f g(-1))。复合材料都表现出优异的特定能量(高达100.8 W H kg(-1))以及出色的特定功率(高达830W kg(-1))。这些发现支持这些复合材料的可能性,以实现实际适用性作为能量存储装置中的电极材料。

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