We use oxygen plasma to increase the height of forests from similar to 0.2 to >2 mm. The effectiveness of treating alumina by oxygen plasma, prior to iron nanoparticle formation, is studied using cycles of nanotube growth, nanotube burning, and regrowth. This demonstrates that plasma-treated alumina is more resistant to iron bulk diffusion than an untreated one. Secondary ion mass spectroscopy shows there is negligible iron diffusion into the bulk of treated alumina. Plasma treatment of catalyst supports is potentially useful for growth of ultra-high-density nanotube forests for applications such as interconnects in integrated circuits and heat sinks.

Effect of Oxygen Plasma Alumina Treatment on Growth of Carbon Nanotube Forests

Bhardwaj Sunil;Cepek Cinzia;
2014

Abstract

We use oxygen plasma to increase the height of forests from similar to 0.2 to >2 mm. The effectiveness of treating alumina by oxygen plasma, prior to iron nanoparticle formation, is studied using cycles of nanotube growth, nanotube burning, and regrowth. This demonstrates that plasma-treated alumina is more resistant to iron bulk diffusion than an untreated one. Secondary ion mass spectroscopy shows there is negligible iron diffusion into the bulk of treated alumina. Plasma treatment of catalyst supports is potentially useful for growth of ultra-high-density nanotube forests for applications such as interconnects in integrated circuits and heat sinks.
2014
Istituto Officina dei Materiali - IOM -
Inglese
118
32
18683
18692
10
Sì, ma tipo non specificato
10
info:eu-repo/semantics/article
262
Yang, Junwei; Esconjauregui, Santiago; Xie, Rongsie; Sugime, Hisashi; Makaryan, Taron; D'Arsie, Lorenzo; Arellano David Leonardo, Gonzalez; Bhardwaj, ...espandi
01 Contributo su Rivista::01.01 Articolo in rivista
none
   Technology for Wafer-scale Carbon Nanotube Applications
   TECHNOTUBES
   FP7
   228579
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/253421
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