首页> 外文期刊>Journal of Advanced Manufacturing Technology >ENHANCING GRAPHITIC CARBON CONTENT OF CARBON-BASED ELECTRODE MATERIALS BY PULSED ELECTROPHORETIC DEPOSITION FOR ELECTROCHEMICAL CAPACITOR
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ENHANCING GRAPHITIC CARBON CONTENT OF CARBON-BASED ELECTRODE MATERIALS BY PULSED ELECTROPHORETIC DEPOSITION FOR ELECTROCHEMICAL CAPACITOR

机译:脉冲电化学沉积法用于电化学电容器增强碳基电极材料的图形碳含量

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Crystallinity of carbon electrode materials and their deposition techniques are the crucial factors for electrochemical capacitor (EC) performance. The present work investigates deposit yield and graphitic content of activated carbon (AC) and CNT coatings deposited by pulsed electrophoretic deposition (EPD). Pulse voltage with pulse separation times of 30 to 50 s, alternated with the long pulse width (i.e. 2.5 min) was applied. Although the pulse separation time at 30 s reduced the CNT coating yield, its graphitic content increased by 40 % as compared to the CNT coating deposited by continuous voltage EPD, as indicated by the I_(G)/I_(D )ratio of Raman spectra. However, graphitic content increase was not observed in the deposition of AC. Consequently, the CNT deposition gained a higher graphitic-nongraphitic content ratio than the AC. This finding opened up the possibility of the EC performance enhancement by the graphitic CNT control in electrode materials through EPD process.
机译:碳电极材料的结晶度及其沉积技术是电化学电容器(EC)性能的关键因素。本工作研究了通过脉冲电泳沉积(EPD)沉积的活性炭(AC)和CNT涂层的沉积产率和石墨含量。施加脉冲间隔时间为30到50 s,长脉冲宽度(即2.5分钟)交替的脉冲电压。尽管在30 s处的脉冲分离时间降低了CNT涂层的产量,但与通过连续电压EPD沉积的CNT涂层相比,其石墨含量增加了40%,如拉曼光谱的I_(G)/ I_(D)比所示。然而,在AC的沉积中未观察到石墨含量的增加。因此,CNT沉积获得了比AC更高的石墨-非石墨含量比。这一发现为通过EPD工艺对电极材料中的石墨CNT进行控制而提高EC性能提供了可能性。

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