Growth of aluminum nitride single crystals under thermal explosion conditions

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15 Citations (Scopus)

Abstract

The process of aluminum nanopowder combustion in air under thermal explosion conditions has been studied. It is established that the presence of a constant magnetic field with an induction of 0. 4 T favors the formation of aluminum nitride single crystals under non-steady-state combustion conditions.

Original languageEnglish
Pages (from-to)965-966
Number of pages2
JournalTechnical Physics Letters
Volume37
Issue number10
DOIs
Publication statusPublished - Oct 2011

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aluminum nitrides
explosions
single crystals
induction
aluminum
air
magnetic fields

ASJC Scopus subject areas

  • Physics and Astronomy (miscellaneous)

Cite this

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title = "Growth of aluminum nitride single crystals under thermal explosion conditions",
abstract = "The process of aluminum nanopowder combustion in air under thermal explosion conditions has been studied. It is established that the presence of a constant magnetic field with an induction of 0. 4 T favors the formation of aluminum nitride single crystals under non-steady-state combustion conditions.",
author = "Il'in, {A. P.} and Mostovshchikov, {A. V.} and Root, {L. O.}",
year = "2011",
month = "10",
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language = "English",
volume = "37",
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journal = "Technical Physics Letters",
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publisher = "Maik Nauka-Interperiodica Publishing",
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AU - Il'in, A. P.

AU - Mostovshchikov, A. V.

AU - Root, L. O.

PY - 2011/10

Y1 - 2011/10

N2 - The process of aluminum nanopowder combustion in air under thermal explosion conditions has been studied. It is established that the presence of a constant magnetic field with an induction of 0. 4 T favors the formation of aluminum nitride single crystals under non-steady-state combustion conditions.

AB - The process of aluminum nanopowder combustion in air under thermal explosion conditions has been studied. It is established that the presence of a constant magnetic field with an induction of 0. 4 T favors the formation of aluminum nitride single crystals under non-steady-state combustion conditions.

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