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Related papers: Solute-Vacancy Clustering in Aluminum

200 papers

We study theoretically large metal clusters containing vacancies. We propose an approach, which combines the Kohn-Sham results for monovacancy in a bulk of metal and analytical expansions in small parameters $c_{v}$ (relative concentration…

Mesoscale and Nanoscale Physics · Physics 2018-02-14 V. V. Pogosov , V. I. Reva

In medium binding energies and Mott points for $d$, $t$, $^3$He and $\alpha$ clusters in low density nuclear matter have been determined at specific combinations of temperature and density in low density nuclear matter produced in…

The vacancy concentration at finite temperatures is studied for a series of (CoCrFeMn)$_{1-x_\mathrm{Ni}}$Ni$_{x_\mathrm{Ni}}$ alloys by grand-canonical Monte-Carlo (MC) simulations. The vacancy formation energies are calculated from a…

Materials Science · Physics 2021-06-28 Daniel Utt , Alexander Stukowski , Karsten Albe

A formalism for the vacancy formation energies in random alloys within the single-site mean-filed approximation, where vacancy-vacancy interaction is neglected, is outlined. It is shown that the alloy configurational entropy can…

Computational Physics · Physics 2016-05-04 Andrei V. Ruban

A class of proposed coherent precipitate structures (Guinier-Preston zones) in the Al-Mg-Si alloy are investigated using first-principles density functional theory methods. The cluster expansion method is used to extract effective…

Materials Science · Physics 2007-05-23 Nils Sandberg , Mattias Slabanja , Randi Holmestad

Hydrogen (H) content modifies the creep response of Fe-based alloys by altering thermodynamics of point-defects; here we identify the electronic-structure mechanism underlying this effect. Using spin-polarized first-principles calculations…

Materials Science · Physics 2026-03-05 Prashant Singh , Yash Pachaury , Aaron Anthony Kohnert , Laurent Capolungo , Duane D. Johnson

The influence of hydrogen on the structural evolutions of an Al-Mg-Si alloy during natural and artificial ageing was investigated experimentally. The aim of the study was a better understanding of interactions between hydrogen and…

Materials Science · Physics 2022-03-01 Guillaume Hachet , X Sauvage

Ab initio self-consistent total energy calculations using second order Moller-Plesset perturbation theory and Hay-Wadt effective core potentials with associated basis sets (HWECP's) for gallium and arsenic have been used to investigate the…

Materials Science · Physics 2007-05-23 Michael L. Mayo , Asok K. Ray

Reactivity of Aluminum Clusters has been found to exhibit size sensitive variations. This work is motivated by a recent report1 predicting higher reactivity of melted Aluminum clusters towards the N2 molecule as compared to the non-melted…

Materials Science · Physics 2010-06-02 Bhakti S. Kulkarni , Sailaja Krishnamurty , Sourav Pal

The effects of hydrogen impurities in the bulk and on the surface of aluminum are theoretically investigated. Within the framework of density functional theory, we have obtained the dependence on H concentration of the stacking fault…

Materials Science · Physics 2009-11-07 Gang Lu , Daniel Orlikowski , Ickjin Park , Olivier Politano , Efthimios Kaxiras

Following the formalism of the Classical Nucleation Theory beyond the dilute solution approximation, this paper considers a difference between the actual solute supersaturation (given by the present-to-saturated solute activity ratio) and…

Chemical Physics · Physics 2018-03-14 Alexander Borisenko

As part of a new approach to calculating the total energy of a diatomic molecule (cluster), it is shown that in the first order of perturbation theory, the total energy of a triatomic cluster is equal to the sum of the total energies of the…

Chemical Physics · Physics 2025-07-02 V. P. Koshcheev , Yu. N. Shtanov

Zr and Sc precipitate in aluminum alloys to form the compounds Al3Zr and Al3Sc which for low supersaturations of the solid solution have the L12 structure. The aim of the present study is to model at an atomic scale this kinetics of…

Materials Science · Physics 2009-11-10 Emmanuel Clouet , Maylise Nastar , Christophe Sigli

In this work we introduce a metal-oxide bond-energy model for alloy oxides based on pure-phase bond energies and bond synergy factors that describe the effect of alloying on the bond energy between cations and oxygen, an important quantity…

Materials Science · Physics 2020-11-13 Szu-Chia Chien , Wolfgang Windl

The stability of two-component clusters consisting of light (Na or K) and heavy (Rb or Cs) alkali atoms formed on helium nanodroplets is studied by femtosecond laser ionization in combination with mass spectrometry. Characteristic stability…

Atomic and Molecular Clusters · Physics 2011-12-19 G. Droppelmann , M. Mudrich , C. P. Schulz , F. Stienkemeier

Using first principles calculations based on density functional theory, we study the geometric, electronic, and magnetic properties of Pt, Ni and Co-based half Heusler alloys, namely, Pt$BC$, Ni$BC$ and Co$BC$ ($B$ = Cr, Mn and Fe; $C$ =…

Materials Science · Physics 2019-05-29 Madhusmita Baral , Aparna Chakrabarti

Traditionally, the condensation sequence of circumstellar dust is predicted based on the thermodynamic stabilities of specific condensates in the macroscopic bulk phase. However, at the (sub-)nanometer scale clusters with non-crystalline…

Astrophysics of Galaxies · Physics 2025-10-16 David Gobrecht

The stability properties of vacancy clusters in hexagonal close-packed Zr, cavities and dislocation loops, are investigated at the atomic scale, with a modeling approach based on density functional theory and empirical potentials.…

Materials Science · Physics 2014-07-22 Céline Varvenne , Olivier Mackain , Emmanuel Clouet

Alkali-activated materials and related alternative cementitious systems are sustainable material technologies that have the potential to substantially lower CO$_2$ emissions associated with the construction industry. However, the impact of…

Mesoscale and Nanoscale Physics · Physics 2016-12-23 V. Ongun Özçelik , Claire E. White

We use first principles calculations to study the influence of thermomechanical loads on the energetics of precipitation in magnesium-aluminum alloys. Using Density Functional Theory simulations, we present expressions of the energy of…

Materials Science · Physics 2020-01-07 Swarnava Ghosh , Kaushik Bhattacharya