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2000
Volume 4, Issue 1
  • ISSN: 1877-9468
  • E-ISSN: 1877-9476

Abstract

The electronic and structural properties and elastic constants of the wurtzite phase of GaN, was investigated by computer simulation at Density Functional Theory level, with B3LYP and B3PW hybrid functional. The electronic properties were investigated through the analysis of the band structures and density of states, and the mechanical properties were studied through the calculus of the elastic constants: C11, C33, C44, C12, and C13. The results show that the maximum of the valence band and the minimum of the conduction band are both located at the Γ point, indicating that GaN is a direct band gap semiconductor. The following constants were obtained for B3LYP and B3PW (in brackets): C11 = 366.9 [372.4], C33 = 390.9 [393.4], C44 = 99.1 [96.9], C12 = 143.6 [155.2], and C13 = 107.6 [121.4].

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/content/journals/cpc/10.2174/18779468113036660032
2014-01-01
2025-05-24
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/content/journals/cpc/10.2174/18779468113036660032
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  • Article Type:
    Research Article
Keyword(s): B3LYP; B3PW; elastic constant; GaN; periodic calculations
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