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Vertically Aligned Double-walled Carbon Nanotube Electrode Prepared By Transfer Methodology For Electric Double Layer Capacitor

机译:转移法制备双电层电容器的垂直取向双壁碳纳米管电极

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摘要

We successfully prepared a vertically aligned double-walled carbon nanotube (DWCNT) sheet by a transfer procedure from a silicon substrate as a DWCNT seedbed that was covered with catalyst grains to an aluminum sheet as a current collector for application to a high-performance electrode for an electric double layer capacitor (EDLC). The charge-discharge characteristics and EDLC performances of the aligned DWCNT electrode were evaluated and compared with those of a vertically aligned multi-walled CNT (MWCNT) electrode. The gravimetric capacitance of the DWCNT electrode was ca. four times larger than that of the MWCNT electrode. The rate capability of the DWCNT electrode was found to be excellent. This is mainly ascribed to our transfer technique.
机译:我们通过转移程序成功地制备了垂直排列的双壁碳纳米管(DWCNT)薄板,该过程是从作为DWCNT种子床的硅基板上进行的,该薄床被催化剂颗粒覆盖到作为集电器的铝薄片上,以应用于高性能电极,用于双电层电容器(EDLC)。评价了取向的DWCNT电极的充放电特性和EDLC性能,并将其与垂直取向的多壁CNT(MWCNT)电极的充放电特性和EDLC性能进行了比较。 DWCNT电极的重量电容约为。是MWCNT电极的四倍。发现DWCNT电极的速率能力优异。这主要归因于我们的传输技术。

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