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Low Temperature of formation of Nickel Germanide by reaction of Nickel and Crystalline Germanium

conference contribution
posted on 2024-10-31, 18:07 authored by Fahid Algahtani, Patrick LeechPatrick Leech, Geoffrey Reeves, Anthony HollandAnthony Holland, Mark Blackford, Gordon Thorogood, J McCallum, B.C Johnson
The formation of nickel germanide has been examined over a range of low temperatures (200-400 °C) in an attempt to minimize the thermal budget for the process. Cross-sectional Transmission Electron Microscopy (TEM) was used to determine the texture of the germanide layer and the morphology and constituent composition of the Ge/NiGe interface. The onset and completion of reaction between Ni and Ge were identified by means of a heated stage in combination with in-situ x-ray diffraction (XRD) measurements. The stages of reaction were also monitored using measurements of sheet resistance of the germanides by the Van der Pauw technique. The results have shown that the minimum temperature for the initiation of reaction of Ni and Ge to form NiGe was 225 °C. However, an annealing temperature > 275 °C was necessary for the extensive (and practical) formation of NiGe. Between 200 and 300 °C, the duration of annealing required for the formation of NiGe was significantly longer than at higher temperatures. The stoichiometry of the germanide was very close to NiGe (1:1) as determined using energy dispersive spectroscopy (EDS).

History

Start page

1

End page

6

Total pages

6

Outlet

Proceedings of the MRS Fall Meeting - Symposium OO: Solid-State Chemistry of Inorganic Materials Volume 1655/ 2014

Editors

Charles Black, Elisabetta Comini, Gitti Frey, Kristi Kiick, Loucas Tsakalakos

Name of conference

Symposium OO: Solid-State Chemistry of Inorganic Materials

Publisher

Cambridge University press

Place published

United Kingdom

Start date

2013-12-01

End date

2013-12-06

Language

English

Copyright

© Cambridge University Press 2014

Former Identifier

2006049512

Esploro creation date

2020-06-22

Fedora creation date

2015-01-21

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