Carbon dust formation in a cold plasma from cathode sputtering

Nanoparticles are produced in argon glow plasmas where carbon is introduced by sputtering of a graphite cathode. A scaling law of growth is reported on as a function of the discharge time. Two successive stages of growth of concomitant agglomeration and carbon deposition are observed, followed by a...

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Veröffentlicht in:Journal of nuclear materials 2009-06, Vol.390, p.140-143
Hauptverfasser: Arnas, C., Mouberi, A., Hassouni, K., Michau, A., Lombardi, G., Bonnin, X., Bénédic, F., Pégourié, B.
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container_end_page 143
container_issue
container_start_page 140
container_title Journal of nuclear materials
container_volume 390
creator Arnas, C.
Mouberi, A.
Hassouni, K.
Michau, A.
Lombardi, G.
Bonnin, X.
Bénédic, F.
Pégourié, B.
description Nanoparticles are produced in argon glow plasmas where carbon is introduced by sputtering of a graphite cathode. A scaling law of growth is reported on as a function of the discharge time. Two successive stages of growth of concomitant agglomeration and carbon deposition are observed, followed by a final stage of growth by carbon deposition. A model of formation of molecular precursors by coagulation of neutral clusters on the one hand and of neutral-negative clusters on the other hand is presented, based on formation enthalpy and cluster geometry.
doi_str_mv 10.1016/j.jnucmat.2009.01.148
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subjects Applied sciences
Controled nuclear fusion plants
Energy
Energy. Thermal use of fuels
Exact sciences and technology
Fission nuclear power plants
Fuels
Installations for energy generation and conversion: thermal and electrical energy
Nuclear fuels
title Carbon dust formation in a cold plasma from cathode sputtering
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