Defect-and-impurity state of diamond single crystals grown in the Fe–Mg–Al–C system

Special features of the formation of the defect and impurity states of diamond single crystals grown in the Fe–Mg–Al–C growth system by the temperature gradient method at the pressure 7.2–8.2 GPa and temperature 1700–1900°C have been investigated. It has been shown that as the magnesium content of t...

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Published inJournal of superhard materials Vol. 39; no. 2; pp. 83 - 87
Main Authors Kovalenko, T. V., Ivakhnenko, S. A., Lysakovsky, V. V., Gordeev, S. A., Burchenya, A. V.
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LanguageEnglish
Published New York Allerton Press 01.03.2017
Springer Nature B.V
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Abstract Special features of the formation of the defect and impurity states of diamond single crystals grown in the Fe–Mg–Al–C growth system by the temperature gradient method at the pressure 7.2–8.2 GPa and temperature 1700–1900°C have been investigated. It has been shown that as the magnesium content of the growth system increases, the type of the grown crystals changes in the following sequence: IIa → IIb.
AbstractList Special features of the formation of the defect and impurity states of diamond single crystals grown in the Fe–Mg–Al–C growth system by the temperature gradient method at the pressure 7.2–8.2 GPa and temperature 1700–1900°C have been investigated. It has been shown that as the magnesium content of the growth system increases, the type of the grown crystals changes in the following sequence: IIa → IIb.
Author Lysakovsky, V. V.
Kovalenko, T. V.
Ivakhnenko, S. A.
Burchenya, A. V.
Gordeev, S. A.
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Cites_doi 10.1016/S0925-9635(99)00022-9
10.1088/1674-1056/25/8/088104
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Keywords Fe–Mg–Al–C system
defect and impurity state
boron
diamond single crystals
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SubjectTerms Chemistry
Chemistry and Materials Science
Crystal growth
Physical Chemistry
Production
Properties
Single crystals
Structure
Title Defect-and-impurity state of diamond single crystals grown in the Fe–Mg–Al–C system
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