Electrochemical hydrogen storage of aligned multiwalled carbon nanotubes |
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Authors: | Donghui?Hao mailto:haodonghui@mails.tsinghua.edu.cn" title=" haodonghui@mails.tsinghua.edu.cn" itemprop=" email" data-track=" click" data-track-action=" Email author" data-track-label=" " >Email author,Hongwei?Zhu,Xianfeng?Zhang,Yanhui?Li,Cailu?Xu,Zongqiang?Mao,Jing?Liu,Dehai?Wu |
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Affiliation: | (1) Department of Mechanical Engineering, Tsinghua University, 100084 Beijing, China;(2) Institute of Nuclear Energy Technology, Tsinghua University, 100084 Beijing, China |
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Abstract: | Hydrogen storage of aligned multi-walled carbon nanotubes (a-MWNTs), non-aligned MWNTs (n- MWNTs) and graphite electrodes are studied by the electrochemical measurements. The electrodes are prepared by mixing carbon nanotubes (CNTs), copper powder and PTFE binder in a weight ratio of 1:5:3 and compressing the mixture into porous nickel collector. The results show that the electrochemical hydrogen storage capacity of the a-MWNT electrode is up to 1625 mAh/g, corresponding to a high hydrogen storage of 5.7 wt%, which is 10 times that of graphite electrode and is 13 times that of n-MWNT electrode, suggesting that a-MWNTs are promising materials for electrochemical hydrogen storage. |
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Keywords: | carbon nanotubes aligned electrochemical hydrogen storage. |
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