Preparation of copper and silicon/copper powders by a gas evaporation-condensation method

Pure and silicon-coated metal copper nano to submicron-sized powders were prepared by gas evaporation and condensation. This powder was synthesized by using an industrial electron accelerator, ELV-6, with Ar as the carrier gas. Vapour from the liquefied metal surface was transferred to the cold zone...

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Main Authors: Jadambaa, Temuujin, Bardakhanov, S., Nomoev, A., Zaikovskii, V., Minjigmaa, A., Dugersuren, G., Van Riessen, Arie
Format: Journal Article
Published: Indian Academy of Sciences 2009
Online Access:http://hdl.handle.net/20.500.11937/21217
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author Jadambaa, Temuujin
Bardakhanov, S.
Nomoev, A.
Zaikovskii, V.
Minjigmaa, A.
Dugersuren, G.
Van Riessen, Arie
author_facet Jadambaa, Temuujin
Bardakhanov, S.
Nomoev, A.
Zaikovskii, V.
Minjigmaa, A.
Dugersuren, G.
Van Riessen, Arie
author_sort Jadambaa, Temuujin
building Curtin Institutional Repository
collection Online Access
description Pure and silicon-coated metal copper nano to submicron-sized powders were prepared by gas evaporation and condensation. This powder was synthesized by using an industrial electron accelerator, ELV-6, with Ar as the carrier gas. Vapour from the liquefied metal surface was transferred to the cold zone by the carrier gas and precipitated as spherical Cu metal and Si/Cu composite powders. The mean diameter of the resulting powder was 100–200 nm.
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format Journal Article
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institution Curtin University Malaysia
institution_category Local University
last_indexed 2025-11-14T07:38:16Z
publishDate 2009
publisher Indian Academy of Sciences
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spelling curtin-20.500.11937-212172017-09-13T13:55:06Z Preparation of copper and silicon/copper powders by a gas evaporation-condensation method Jadambaa, Temuujin Bardakhanov, S. Nomoev, A. Zaikovskii, V. Minjigmaa, A. Dugersuren, G. Van Riessen, Arie Pure and silicon-coated metal copper nano to submicron-sized powders were prepared by gas evaporation and condensation. This powder was synthesized by using an industrial electron accelerator, ELV-6, with Ar as the carrier gas. Vapour from the liquefied metal surface was transferred to the cold zone by the carrier gas and precipitated as spherical Cu metal and Si/Cu composite powders. The mean diameter of the resulting powder was 100–200 nm. 2009 Journal Article http://hdl.handle.net/20.500.11937/21217 10.1007/s12034-009-0081-1 Indian Academy of Sciences restricted
spellingShingle Jadambaa, Temuujin
Bardakhanov, S.
Nomoev, A.
Zaikovskii, V.
Minjigmaa, A.
Dugersuren, G.
Van Riessen, Arie
Preparation of copper and silicon/copper powders by a gas evaporation-condensation method
title Preparation of copper and silicon/copper powders by a gas evaporation-condensation method
title_full Preparation of copper and silicon/copper powders by a gas evaporation-condensation method
title_fullStr Preparation of copper and silicon/copper powders by a gas evaporation-condensation method
title_full_unstemmed Preparation of copper and silicon/copper powders by a gas evaporation-condensation method
title_short Preparation of copper and silicon/copper powders by a gas evaporation-condensation method
title_sort preparation of copper and silicon/copper powders by a gas evaporation-condensation method
url http://hdl.handle.net/20.500.11937/21217