Morphology control of tungsten nanorods grown by glancing angle RF magnetron sputtering under variable argon pressure and flow rate

Morphologically novel tungsten nanorods (WNRs) with the co-existence of two crystalline phases, α-W (thermodynamically stable) and β-W, were fabricated by glancing angle RF magnetron sputtering technique under various Ar pressures and flow rates. For these nanorods, a significant variation in their...

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Veröffentlicht in:Physics letters. A 2010-09, Vol.374 (43), p.4430-4437
Hauptverfasser: Khedir, Khedir R., Kannarpady, Ganesh K., Ishihara, Hidetaka, Woo, Justin, Ryerson, Charles, Biris, Alexandru S.
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Sprache:eng
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Zusammenfassung:Morphologically novel tungsten nanorods (WNRs) with the co-existence of two crystalline phases, α-W (thermodynamically stable) and β-W, were fabricated by glancing angle RF magnetron sputtering technique under various Ar pressures and flow rates. For these nanorods, a significant variation in their morphology and surface roughness was observed. These structures could be useful in a wide range of applications such as field emission, robust superhydrophobic coatings, energy, and medicine.
ISSN:0375-9601
1873-2429
DOI:10.1016/j.physleta.2010.08.066