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首页> 外文期刊>Journal of Solid State Electrochemistry >Preparation and electrochemical properties of nanofiber poly(2,5-dihydroxyaniline)/activated carbon composite electrode for supercapacitor
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Preparation and electrochemical properties of nanofiber poly(2,5-dihydroxyaniline)/activated carbon composite electrode for supercapacitor

机译:超级电容器纳米纤维聚(2,5-二羟基苯胺)/活性炭复合电极的制备及电化学性能

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摘要

In this study, poly(2,5-dihydroxyaniline) (PDHA) was successfully prepared by electrochemical method on the surface of active carbon (AC) electrodes. The physical and electrochemistry properties of PDHA/AC composite electrode compared with pure AC electrode were investigated by scanning electronic microscope (SEM), cyclic voltammetry (CV), electrochemical impedance spectroscopy, cycle life test. From SEM, PDHA presents nanofiber network morphology. The diameter of the nanofiber PDHA is about 200–300 nm. PDHA/AC composite electrode shows redox peaks in CV curve and voltage plateaus in galvanostatic charge–discharge curve, and all these indicate that PDHA/AC composite electrode has more advantages. The maintenance of the capacitance compared to initial cycle capacitance of composite electrode is about 90% during the charge–discharge cycles. In conclusion, The PDHA/AC composite electrode shows much higher specific capacitance (958 F g−1), better power characteristics, longer cycle life. Therefore, PDHA/AC composite electrodes were more promising for application in capacitor. This can be attributed to the introduction of nanofiber PDHA. The effect and role of PDHA in the composite electrodes were also discussed in detail.
机译:在这项研究中,成功​​地通过电化学方法在活性炭(AC)电极表面上制备了聚(2,5-二羟基苯胺)(PDHA)。通过扫描电子显微镜(SEM),循环伏安法(CV),电化学阻抗谱,循环寿命试验研究了PDHA / AC复合电极与纯AC电极相比的物理和电化学性能。通过SEM,PDHA呈现了纳米纤维网络的形态。纳米纤维PDHA的直径约为200–300 nm。 PDHA / AC复合电极在CV曲线中显示氧化还原峰,在恒电流充放电曲线中显示电压平稳,所有这些都表明PDHA / AC复合电极具有更多的优势。在充放电循环中,与复合电极的初始循环电容相比,电容的维持率约为90%。总之,PDHA / AC复合电极具有更高的比电容(958 F g -1 ),更好的功率特性和更长的循环寿命。因此,PDHA / AC复合电极在电容器中的应用前景更为广阔。这可以归因于纳米纤维PDHA的引入。还详细讨论了PDHA在复合电极中的作用和作用。

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