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In the present study we investigate the irradiation-defects hybridized graphene scaffold as one potential building material for the anode of Li-ion batteries. Designating the Wigner V22 defect as a representative, we illustrate the…

Materials Science · Physics 2015-03-10 J. Song , B. Ouyang , N. V. Medhekar

Li containing transition metal oxides are known as good ionic conductors. Performing classical molecular dynamics simulations, the diffusion behavior of Li ions is investigated in crystalline and amorphous phases with the stoichiometries…

Materials Science · Physics 2025-01-29 Daniel Mutter , Diego A. Pantano , Christian Elsässer , Daniel F. Urban

The present work aims to study the effect of ion irradiation on structural and electrical properties and their correlation with the defects in Zn1-xMnxO type system. Zn1-xMnxO (x = 0.02, 0.04) samples have been synthesized by solid-state…

Materials Science · Physics 2011-05-10 S. K. Neogi , S. Chattopadhyay , Aritra Banerjee , S. Bandyopadhyay , A. Sarkar , Ravi Kumar

By studying Fe-doped ZnO pellets and thin films with various x-ray spectroscopic techniques, and complementing this with density functional theory calculations, we find that Fe-doping in bulk ZnO induces isovalent (and isostructural) cation…

Wadsley-Roth (WR) niobates have emerged as high-rate anode materials that can combine rapid ionic diffusion with good electronic conductivity. WR compounds have been defect-enhanced by limited annealing, however, such materials often…

The formation energies and transition energy levels of native defects in hexagonal BN have been studied by first-principles calculations based on hybrid density functional theory (DFT) together with an empirical dispersion correction of…

Materials Science · Physics 2015-06-15 V. Wang , R. J. Liu , H. P. He , C. M. Yang , L. Ma

Vacancy is known to play a critical role in solid state diffusion and determine many properties of the materials. We report a proof-of-principle result on Mn in the role of tuning vacancy diffusion by an anomalous Friedel Oscillations…

Materials Science · Physics 2021-11-02 Shaosong Huanga , Huaqing Guan , Fuyang Tian , Chenyang Lu , Qiu Xu , Jijun Zhao

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…

We present a density-functional theory study of the effects of oxygen vacancies on the structural and electronic properties of vanadium dioxide (VO$_2$). Our motivation is the reported suppression of the metal-insulator transition by oxygen…

Materials Science · Physics 2025-11-11 Oskar Leibnitz , Peter Mlkvik , Nicola A. Spaldin , Claude Ederer

In the layered transition metal oxide LiNbO$_2$ the Nb$^{3+}$ ($4d^2$) ion is trigonal-prismatically coordinated with O ions, with the resulting crystal field leading to a single band system for low energy properties. A tight-binding…

Superconductivity · Physics 2009-11-11 Erik R. Ylvisaker , Warren E. Pickett

LiNiO$_2$ shows poor Li transport kinetics at the ends of charge and discharge in the first cycle, which significantly reduces its available capacity in practice. The atomistic origins of these kinetic limits have not been fully understood.…

Materials Science · Physics 2024-03-26 Penghao Xiao , Ning Zhang , Harold Smith Perez , Minjoon Park

Results of our shell-model calculations concerning the determination of empirical parameters of inter-ionic potentials and the formation energies of point defects in LiNbO3 are presented. We employed the relaxed fitting method which is…

Disordered Systems and Neural Networks · Physics 2007-05-23 Shaoxin Feng , Qinghua Jin , Baohui Li , Zhenya Guo , Datong Ding

While defects such as oxygen vacancies in correlated materials can modify their electronic properties dramatically, understanding the microscopic origin of electronic correlations in materials with defects has been elusive. Lanthanum…

Strongly Correlated Electrons · Physics 2021-02-24 Xingyu Liao , Vijay Singh , Hyowon Park

Using first-principles calculations, we explored all the 21 defect-pairs in GaN and considered 6 configurations with different defect-defect distances for each defect-pair. 15 defect-pairs with short defect-defect distances are found to be…

Materials Science · Physics 2020-03-13 He Li , Menglin Huang , Shiyou Chen

The defect induced chemical expansion in acceptor-doped barium zirconate is investigated using density-functional theory (DFT) calculations. The two defect species involved in the hydration reaction, the +2 charged oxygen vacancy and the…

Materials Science · Physics 2015-09-01 Erik Jedvik , Anders Lindman , Magnús Þór Benediktsson , Göran Wahnström

The non-equilibrium boron nitride (BN) phase of zinc oxide (ZnO) has been reported for thin films and nanostructures, however, its properties are not well understood due to a persistent controversy that prevents reconciling experimental and…

Materials Science · Physics 2018-03-21 Xiao Zhang , Andre Schleife

In this paper some specific issues related to point defects in GaAs nanowires are addressed with the help of density functional theory calculations. These issues mainly arise from the growth of nanowires under conditions different from…

Materials Science · Physics 2013-07-02 Yaojun A. Du , Sung Sakong , Peter Kratzer

From state-of-the-art density-functional calculations using hybrid functionals we show that, persistent $n$-type conductivity in ZnO is due to defect complexes formed between H with intrinsic and extrinsic defects. H exhibits cationic,…

Materials Science · Physics 2013-09-23 R. Vidya , P. Ravindran , H. Fjellvåg

Lithium niobate (LiNbO$_3$, LN) plays an important role in holographic storage, and molybdenum doped LiNbO$_3$ (LN:Mo) is an excellent candidate for holographic data storage. In this paper, the basic features of Mo doped LiNbO$_3$, such as…

Chemical Physics · Physics 2020-05-14 Weiwei Wang , Hongde Liu , Dahuai Zheng , Yongfa Kong , Lixin Zhang , Jingjun Xu

ZnO is co-doped with Na+ and Si4+ in the ratio 2:1. The ratio was intentionally chosen so that net valence state of dopant theoretically matches that of host. This is to avoid dependence in the amount of oxygen vacancies/interstitials…