We apply first principles density functional computational methods to study the structures, densities of states (DOS), and higher occupied molecular orbital (HOMO) – lowest unoccupied molecular orbital (LUMO) gaps of selected free-standing Ge semiconductor quantum dots up to 1.8nm. Our calculations are performed using numerical atomic orbital approach where linear combination of atomic orbital was applied. The surfaces of the quantum dots was passivized by hydrogen atoms. We find that surface passivation does affect the electronic properties associated with the changes of surface state, electron localization, and the energy gaps of germanium nanocrystals as well as the confinement of electrons inside the quantum dots (QDs). Our study shows that the energy gaps of germanium quantum dots decreases with the increasing dot diameter. The size-dependent variations of the computed HOMO-LUMO gaps in our quantum dots model were found to be consistent with the effects of quantum confinement reported in others theoretical and experimental calculation.
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24 April 2015
NATIONAL PHYSICS CONFERENCE 2014 (PERFIK 2014)
18–19 November 2014
Kuala Lumpur, Malaysia
Research Article|
April 24 2015
Density functional calculation of the structural and electronic properties of germanium quantum dots
M. M. Anas;
M. M. Anas
School of Applied Physics, Faculty of Science and Technology,
Universiti Kebangsaan Malaysia
, 43600 Bangi, Malaysia
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G. Gopir
G. Gopir
School of Applied Physics, Faculty of Science and Technology,
Universiti Kebangsaan Malaysia
, 43600 Bangi, Malaysia
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AIP Conf. Proc. 1657, 110006 (2015)
Citation
M. M. Anas, G. Gopir; Density functional calculation of the structural and electronic properties of germanium quantum dots. AIP Conf. Proc. 24 April 2015; 1657 (1): 110006. https://doi.org/10.1063/1.4915225
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