Thermal stability, mechanical properties and nano-imprint ability of Pd-Cu-Ni-P glassy alloy thin film

With the aim of preparing nano-scale pattern for micro-machines and nano-devices, fabrication and imprint ability of Pd 39Cu 29Ni 13P 19 glassy alloy thin film were investigated. By using a magnetron sputtering method, the Pd-based glassy alloy thin film of 1 μm in thickness was successfully fabrica...

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Veröffentlicht in:Intermetallics 2010-10, Vol.18 (10), p.1969-1972
Hauptverfasser: Takenaka, Kana, Togashi, Nozomu, Nishiyama, Nobuyuki, Inoue, Akihisa
Format: Artikel
Sprache:eng
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Zusammenfassung:With the aim of preparing nano-scale pattern for micro-machines and nano-devices, fabrication and imprint ability of Pd 39Cu 29Ni 13P 19 glassy alloy thin film were investigated. By using a magnetron sputtering method, the Pd-based glassy alloy thin film of 1 μm in thickness was successfully fabricated. The Pd-based glassy alloy thin film shows large supercooled liquid region, long incubation time to crystallization, high hardness and very smooth surface, which are suitable for nano-imprint processing. Nano-imprint ability of the obtained film is demonstrated by using dot array mold with a dot diameter of 30 nm. The imprinted hole array pattern precisely corresponded to the periodic dot pattern of the mold. These results suggest that the Pd-based glassy alloy thin film has high potential for application to the nano-imprinting materials for micro-machines and nano-devices.
ISSN:0966-9795
1879-0216
DOI:10.1016/j.intermet.2010.02.045