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Related papers: Zn vacancy as a polaronic hole trap in ZnO

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Results from hybrid density functional theory calculations on the thermodynamic stability and optical properties of the Zn vacancy ($V_{\text{Zn}}$) complexed with common donor impurities in ZnO are reported. Complexing $V_{\text{Zn}}$ with…

Materials Science · Physics 2018-04-04 Y. K. Frodason , K. M. Johansen , T. S. Bjørheim , B. G. Svensson , A. Alkauskas

Hybrid functional calculations reveal the Zn-O divacancy in ZnO, consisting of adjacent Zn and O vacancies, as an electrically active defect exhibiting charge states ranging from $2+$ to $2-$ within the band gap. Notably, the divacancy…

Materials Science · Physics 2019-05-16 Y. K. Frodason , K. M. Johansen , A. Alkauskas , L. Vines

Understanding the structure of ZnO surface reconstructions and their resultant properties is crucial to the rational design of ZnO-containing devices ranging from optoelectronics to catalysts. Here, we are motivated by recent experimental…

Materials Science · Physics 2017-02-02 Ryan Jacobs , Bing Zheng , Brian Puchala , Paul M. Voyles , Andrew B. Yankovich , Dane Morgan

The electronic and optical properties of self-trapped holes in kappa-phase orthorhombic Ga2O3 in conjunction with isoelectronic and acceptor dopants were studied using hybrid density functional theory. Hole trapping was found to be…

Materials Science · Physics 2026-05-18 Eric Welch , Nathan Rabelo Martins , Luisa Scolfaro , Luiz A. F. C. Viana , Pablo D. Borges

Acceptor-bound holes in oxides often localize asymmetrically at one out of several equivalent oxygen ligands. Whereas Hartree-Fock (HF) theory overly favors such symmetry-broken polaronic hole-localization in oxides, standard local density…

Materials Science · Physics 2009-09-09 Stephan Lany , Alex Zunger

High spin states of cation vacancies in GaP, GaN, AlN, BN, ZnO and BeO were analyzed by first principles calculations. The spin-polarized vacancy-induced level is located in the band gap in GaP, ZnO and BeO. In the nitrides, the stronger…

Materials Science · Physics 2015-05-27 O. Volnianska , P. Boguslawski

As the concentration of intrinsic defects becomes sufficiently high in O-deficient ZnO, interactions between defects lead to a significant reduction in their formation energies. We show that the formation of both O-vacancies and…

Materials Science · Physics 2009-11-13 Yong-Sung Kim , C. H. Park

Combining experimental and theoretical tools, we report that Zn vacanciesplay an important role in the electronic and optical responses of ZnS sphalerite. The defective surface of ZnS (001) single crystal prepared in ultra-highvacuum…

Materials Science · Physics 2025-02-24 P. R. A de Oliveira , L. Lima , G. Felix , P. Venezuela , F. Stavale

Calculations of formation energies and charge transition levels of defects routinely rely on density functional theory (DFT) for describing the electronic structure. Since bulk band gaps of semiconductors and insulators are not well…

Materials Science · Physics 2012-04-19 Audrius Alkauskas , Alfredo Pasquarello

Chemical nature of point defects, their segregation, cluster or complex formation in ZnO is an important area of investigation. In this report, 1.2 MeV Ar ion beam is used to incorporate defects in granular ZnO. Evolution of defective state…

Materials Science · Physics 2018-03-14 S. Pal , N. Gogurla , Avishek Das , S. S. Singha , P. Kumar , D. Kanjilal , A. Singha , S. Chattopadhyay , D. Jana , A. Sarkar

We investigate the bonding of H in O vacancies of ZnO using density functional calculations. We find that H is anionic and does not form multicenter bonds with Zn in this compound.

Materials Science · Physics 2007-05-23 H. Takenaka , D. J. Singh

In this work we investigate the electronic properties of mercaptocarboxylic acids with several carbon chain lengths adsorbed on ZnO-(10-10) surfaces via density functional theory calculations using semi-local and hybrid exchange-correlation…

Materials Science · Physics 2018-10-05 Dennis Franke , Michael Lorke , Thomas Frauenheim , Andrea L. daRosa

We use first-principles computational methods to examine hole trapping in organic molecular crystals. We present a computational scheme based on the tuning of the fraction of exact exchange in hybrid density functional theory to eliminate…

Materials Science · Physics 2011-06-21 Na Sai , Paul F. Barbara , Kevin Leung

We use density functional theory (DFT) with non-empirically tuned screened range-separated hybrid (SRSH) functionals to calculate the electronic properties of native zinc and oxygen vacancy point defects in ZnO, and we predict their defect…

Materials Science · Physics 2025-04-21 Sijia Ke , Stephen E. Gant , Leeor Kronik , Jeffrey B. Neaton

Previous luminescence and absorption experiments in Co-doped ZnO revealed two ionization and one intrashell transition of $d(\textrm{Co}^{2+})$ electrons. Those optical properties are analyzed within the generalized gradient approximation…

Materials Science · Physics 2019-05-22 A. Ciechan , P. Bogusławski

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.,…

Hybrid functionals and empirical correction schemes are compared to conventional semi-local density functional theory (DFT) calculations in order to assess the predictive power of these methods concerning the formation energy and the charge…

Materials Science · Physics 2013-07-02 Sung Sakong , Johann Gutjahr , Peter Kratzer

Oxygen vacancy (VO) is a common native point defects that plays crucial roles in determining the physical and chemical properties of metal oxides such as ZnO. However, fundamental understanding of VO is still very sparse. Specifically,…

Materials Science · Physics 2016-06-22 Lishu Liu , Zengxia Mei , Aihua Tang , Alexander Azarov , Andrej Kuznetsov , Qi-Kun Xue , Xiaolong Du

The study of zinc oxide, within the homogeneous electron gas approximation, results in overhybridization of zinc $3d$ shell with oxygen $2p$ shell, a problem shown for most transition metal chalcogenides. This problem can be partially…

In this work, we revisit the issue of the nature of electronic transport in nickel oxide (NiO) and show that the widely used model of free small polaron hopping, initially raised to characterize transport in high-purity samples, is not…

Other Condensed Matter · Physics 2019-06-26 Robert Karsthof , Marius Grundmann , Markus Arthur Anton , Friedrich Kremer
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