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Vertically aligned carbon nanotube electrodes directly grown on a glassy carbon electrode

机译:在玻璃碳电极上直接生长的垂直排列的碳纳米管电极

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摘要

Three-dimensional microelectrodes were fabricated using glassy carbon electrodes combined with vertically aligned carbon nanotubes (VACNTs). VACNTs were grown on various conducting electrode patterns including a carbon electrode fabricated by pyrolysis of a negative photoresist, with plasma-enhanced chemical vapor deposition using a bilayer Fe/Al catalyst. VACNT electrodes grown on the glassy carbon showed excellent electrochemical behavior, whereas VACNT electrodes grown on Pt showed poor electrochemical performance, presumably due to the poor contact between VACNTs and the Pt electrode. Electron microscopy showed that the VACNT layer was strongly bound to the carbon electrode, while that on Pt tended to peel away. The versatility of the all-carbon microelectrodes was also tested by using them for interfacing stem cells. Their superior mechanical properties and the electrical connectivity between the carbon electrode and the VACNTs, along with the simple fabrication process, suggest that glassy carbon may be a good conducting substrate for VACNT electrodes.
机译:使用玻璃碳电极和垂直排列的碳纳米管(VACNT)组合制作三维微电极。 VACNTs在各种导电电极图案上生长,包括通过负光刻胶热解制备的碳电极,并使用双层Fe / Al催化剂进行等离子体增强化学气相沉积。在玻璃碳上生长的VACNT电极表现出优异的电化学性能,而在Pt上生长的VACNT电极则显示出较差的电化学性能,这可能是由于VACNTs与Pt电极之间的接触不良所致。电子显微镜显示,VACNT层牢固地结合在碳电极上,而Pt上的则倾向于剥离。还通过将全碳微电极用于干细胞接口来测试其多功能性。它们优越的机械性能以及碳电极与VACNT之间的电连接性以及简单的制造工艺表明,玻璃碳可能是VACNT电极的良好导电基材。

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