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用于超级电容器电极应用的多壁碳纳米管纸负载氧化钒的超临界流体沉积。

Supercritical fluid deposition of vanadium oxide on multi-walled carbon nanotube buckypaper for supercapacitor electrode application.

机构信息

High Performance Materials Institute, Florida State University, Tallahassee, FL 32310, USA.

出版信息

Nanotechnology. 2011 Sep 7;22(36):365402. doi: 10.1088/0957-4484/22/36/365402. Epub 2011 Aug 11.

Abstract

Composite electrodes were fabricated for supercapacitor applications by depositing vanadium oxide onto multi-walled carbon nanotube (MWCNT) buckypaper using supercritical fluid deposition (SFD). The deposited thin vanadium oxide layer showed amorphous structure with excellent uniformity. In aqueous KCl electrolyte, the vanadium oxide exhibited a constant pseudo-capacitance of ∼ 1024 F g(-1), which was independent of the oxide material loading (up to 6.92 wt%) and voltage scan rate (up to 100 mV s(-1)). The highest specific electrode capacitance achieved was ∼ 85 F g(-1), which was almost four times that of the pristine buckypaper electrode.

摘要

采用超临界流体沉积(SFD)法在多壁碳纳米管(MWCNT)纸浆上沉积氧化钒,制备用于超级电容器的复合电极。沉积的薄氧化钒层表现出非晶态结构,具有优异的均匀性。在水性 KCl 电解质中,氧化钒表现出恒定的准电容约 1024 F g(-1),与氧化物材料负载(高达 6.92wt%)和电压扫描速率(高达 100 mV s(-1))无关。获得的最高比电极电容约为 85 F g(-1),几乎是原始纸浆电极的四倍。

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