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We report first-principles calculations that clarify the formation energies and charge transition levels of native point defects (Ga and O vacancies, interstitials, and a Ga vacancy-O vacancy pair) in corundum structured ${\alpha}$-Ga2O3.…

Materials Science · Physics 2019-08-13 Takuma Kobayashi , Tomoya Gake , Yu Kumagai , Fumiyasu Oba , Yu-ichiro Matsushita

We discuss the applicability of the pseudopotential-like self-interaction correction (pSIC) to the study of defect energetics and electronic structure of In2O3. Our results predict that substitutional (at oxygen sites) and interstitial (at…

Materials Science · Physics 2016-06-24 Juan J. Meléndez , Małgorzata Wierzbowska

Using hybrid density functional theory, we investigated formation energies and transition energies of possible donor-like defects in GaInO3, with the aim of exploring the sources of the experimentally observed n-type conductivity in this…

Materials Science · Physics 2015-06-18 V. Wang , W. Xiao , L. -J. Kang , R. -J. Liu , H. Mizuseki , Y. Kawazoe

Understanding the unique properties of ultra-wide band gap semiconductors requires detailed information about the exact nature of point defects and their role in determining the properties. Here, we report the first direct microscopic…

The formation and electronic properties of nitrogen-related defect complexes in $\beta-Ga_2O_3$ are investigated using first-principles calculations. Starting from the energetically favorable $N_{i9}-N_{OI}$ configuration, nitrogen atoms…

Materials Science · Physics 2026-05-13 Asiyeh Shokri , Yevgen Melikhov , Yevgen Syryanyy , Maryna Chernyshova , Iraida N. Demchenko

Point defects in Ga- and Al-doped ZnO thin films are studied by means of first principles electronic structure calculations. Candidate defects are identified to explain recently observed differences in electrical and spectroscopical…

Materials Science · Physics 2016-10-06 E. Menéndez-Proupin , P. Palacios , P. Wahnón

The presence of defects in the narrow-gap semiconductors GaSb and InSb affects their dopability and hence applicability for a range of optoelectronic applications. Here, we report hybrid density functional theory based calculations of the…

Materials Science · Physics 2019-07-31 J. Buckeridge , T. D. Veal , C. R. A. Catlow , D. O. Scanlon

A density functional study is presented of the interstitial Zn$_i$, Ge$_i$, and N$_i$ in ZnGeN$_2$. Corrections to the band gap are included by means of the LDA+U method. The Zn and Ge interstitials are both found to strongly prefer the…

Materials Science · Physics 2017-11-01 Dmitry Skachkov , Walter R. L. Lambrecht

In this work an overall electronic structure including the position and formation energies of various intrinsic defects are computed for anatase using Density Functional Theory aided by Hubbard correction (DFT+U). The intrinsic point…

The structure and energetics of Ge substitutional defects on the alpha-Sn/Ge(111) surface are analyzed using Density Functional Theory (DFT) molecular dynamics (MD) simulations. An isolated Ge defect induces a very local distortion of the…

Materials Science · Physics 2009-11-07 Jose Ortega , Ruben Perez , Leszek Jurczyszyn , Fernando Flores

We have studied intrinsic defect complexes in In$_2$O$_3$ using ab initio random structure searching (AIRSS). Our first-principles density-functional-theory calculations predict the thermodynamic stability of several novel defect…

Materials Science · Physics 2016-09-16 Jamie M. Wynn , Richard J. Needs , Andrew J. Morris

Density functional theory paired with a first order many-body perturbation theory correction is applied to determine formation energies and charge transition energies for point defects in bulk In_0.53Ga_0.47As and for models of the…

Mesoscale and Nanoscale Physics · Physics 2017-03-08 Gabriel Greene-Diniz , Kelin J. Kuhn , Paul K. Hurley , James C. Greer

The formation energies of the oxygen vacancy and titanium interstitial in rutile TiO2 were calculated by the screened exchange (sX) hybrid density functional method, which gives a band gap of 3.1 eV, close to the experimental value. The O…

Atomic and Molecular Clusters · Physics 2015-06-05 Hsin-Yi Lee , Stewart J. Clark , John Robertson

We study the electronic and structural properties of substitutional impurities of graphenelike nanoporous materials C$_2$N, $tg$-, and $hg$-C$_3$N$_4$ by means of density functional theory calculations. We consider four types of impurities;…

Materials Science · Physics 2020-10-21 Saif Ullah , Pablo A. Denis , Marcos G. Menezes , Fernando Sato , Rodrigo B. Capaz

We study the formation energies of native point defects in GaN through density-functional theory. In our first-principles scheme, the band edges are positioned in accord with hybrid density functional calculations, thus yielding a band-gap…

Materials Science · Physics 2017-04-12 Giacomo Miceli , Alfredo Pasquarello

Extreme lattice-mismatched III-V nitrides, such as Bi-incorporated GaN, have been realized experimentally thanks to recent advances in epitaxial growth and characterization techniques. However, theoretical insights into defect-related…

Materials Science · Physics 2025-07-03 Yujie Liu , Ishtiaque Ahmed Navid , Zetian Mi , Emmanouil Kioupakis

The brownmillerite-type barium indate (Ba$_2$In$_2$O$_5$) is a potential electrolyte for mixed ionic-electronic conduction in solid oxide fuel cells. Revealing the defect chemistry of this material is key to understanding its ionic and…

Materials Science · Physics 2026-05-27 Rachele Sciotto , Karsten Albe

We present a systematic investigation of native point defects and oxygen impurities in GaAs using hybrid functional calculations. Defects are characterized by their structural, electronic, and optical properties. Under thermodynamic…

Materials Science · Physics 2026-03-10 Khang Hoang

The basic properties of point defects (atomic geometry, the position of charge-transfer levels, and formation energies) on the (110) surface of GaAs, GaP, and InP have been calculated employing density-functional theory. Based on these…

Materials Science · Physics 2007-05-23 G. Schwarz , J. Neugebauer , M. Scheffler

We study the Li interstitial diffusion in pristine and defective ZnO bulk by means of first-principles density functional theory (DFT) coupled with Nudged Elastic Band (NEB) calculations. We consider three types of point defects, i.e.,…

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