Field-induced self-assembly formation of carbon nanotube filaments triggered via gas discharge breakdown

Self-assembly formation of dense carbon nanotube (CNT) filaments is demonstrated with gas discharge breakdown. CNT filament formation is triggered by irradiation of ions generated by gas discharge breakdown on a CNT mat placed on a cathode. The ion irradiation causes detachment of CNTs from the CNT...

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Bibliographic Details
Published inVacuum Vol. 198; p. 110877
Main Authors Sato, Hideki, Hiromura, Masatoshi
Format Journal Article
LanguageEnglish
Published Elsevier Ltd 01.04.2022
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Summary:Self-assembly formation of dense carbon nanotube (CNT) filaments is demonstrated with gas discharge breakdown. CNT filament formation is triggered by irradiation of ions generated by gas discharge breakdown on a CNT mat placed on a cathode. The ion irradiation causes detachment of CNTs from the CNT mat on the cathode. Those CNTs are collected on a counter electrode and reassembled into filaments from the effect of an electric field. We examined the CNT filament formation characteristics using the combination of a plate-shaped cathode covered with a CNT mat and a wire-shaped anode as the discharge electrodes. CNT filament formation strongly depended on the discharge gas (Ar) pressure. Low Ar gas pressure of 4–6 kPa resulted in dense tree-like CNT filament formation on the anode. Addition of a collection electrode to the anode and cathode resulted in drastic enhancement of CNT filament formation. Dense and long filaments, approximately 10 mm in length, formed on the collection electrode. These results indicate that CNT filament formation by discharge breakdown can be used as a versatile dry spinning method for various kinds of CNTs that are unspinnable by conventional methods. •Carbon nanotube mat exposed to gas discharge breakdown creates a lot of dust.•Carbon nanotubes in the dust is reassembled in long filaments in an electric field.•Using triode configuration significantly enhances the filament formation.•The filament formation can be used for simple carbon nanotube spinning method.
ISSN:0042-207X
1879-2715
DOI:10.1016/j.vacuum.2022.110877