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Dive into the research topics where Luana Pedroza is active.

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Featured researches published by Luana Pedroza.


Journal of Chemical Physics | 2009

Density functional theory based screening of ternary alkali-transition metal borohydrides: A computational material design project

Jens Strabo Hummelshøj; David Dominic Landis; Johannes Voss; T. Jiang; Adem Tekin; N. Bork; M. Duøak; Jacob Mortensen; L. Adamska; J. Andersin; J. D. Baran; Georgios D. Barmparis; Franziska Bell; A. L. Bezanilla; J. Bjork; F. Bleken; F. Buchter; M. Bürkle; P. D. Burton; B. B. Buus; Federico Calle-Vallejo; Simone Casolo; B. D. Chandler; D. H. Chi; I Czekaj; Soumendu Datta; A. Datye; A. DeLaRiva; V Despoja; S. Dobrin

We present a computational screening study of ternary metal borohydrides for reversible hydrogen storage based on density functional theory. We investigate the stability and decomposition of alloys containing 1 alkali metal atom, Li, Na, or K (M(1)); and 1 alkali, alkaline earth or 3d/4d transition metal atom (M(2)) plus two to five (BH(4))(-) groups, i.e., M(1)M(2)(BH(4))(2-5), using a number of model structures with trigonal, tetrahedral, octahedral, and free coordination of the metal borohydride complexes. Of the over 700 investigated structures, about 20 were predicted to form potentially stable alloys with promising decomposition energies. The M(1)(Al/Mn/Fe)(BH(4))(4), (Li/Na)Zn(BH(4))(3), and (Na/K)(Ni/Co)(BH(4))(3) alloys are found to be the most promising, followed by selected M(1)(Nb/Rh)(BH(4))(4) alloys.


Physical Review B | 2010

Systematic investigation of a family of gradient-dependent functionals for solids

Philipp Haas; Fabien Tran; Peter Blaha; Luana Pedroza; Antônio J. R. da Silva; Mariana M. Odashima; K. Capelle

Eleven density functionals are compared with regard to their performance for the lattice constants of solids. We consider standard functionals, such as the local-density approximation and the Perdew-Burke-Ernzerhof (PBE) generalized-gradient approximation (GGA), as well as variations of PBE GGA, such as PBEsol and similar functionals, PBE-type functionals employing a tighter Lieb-Oxford bound, and combinations thereof. On a test set of 60 solids, we perform a system-by-system analysis for selected functionals and a full statistical analysis for all of them. The impact of restoring the gradient expansion and of tightening the Lieb-Oxford bound is discussed, and confronted with previous results obtained from other codes, functionals or test sets. No functional is uniformly good for all investigated systems, but surprisingly, and pleasingly, the simplest possible modifications to PBE turn out to have the most beneficial effect on its performance. The atomization energy of molecules was also considered and on a testing set of six molecules, we found that the PBE functional is clearly the best, the others leading to strong overbinding.


Physical Review B | 2009

Gradient-dependent density functionals of the Perdew-Burke-Ernzerhof type for atoms, molecules, and solids

Luana Pedroza; Antônio J. R. da Silva; K. Capelle

One of the standard generalized-gradient approximations (GGAs) in use in modern electronic-structure theory, PBE, and a recently proposed modification designed specifically for solids, PBEsol, are identified as particular members of a family of functionals taking their parameters from different properties of homogeneous or inhomogeneous electron liquids. Three further members of this family are constructed and tested, together with the original PBE and PBEsol, for atoms, molecules and solids. We find that PBE, in spite of its popularity in solid-state physics and quantum chemistry, is not always the best performing member of the family, and that PBEsol, in spite of having been constructed specifically for solids, is not the best for solids. The performance of GGAs for finite systems is found to sensitively depend on the choice of constraints steaming from infinite systems. Guidelines both for users and for developers of density functionals emerge from this work.


Journal of Chemical Physics | 2007

Simple implementation of complex functionals: Scaled self-consistency

Matheus P. Lima; Luana Pedroza; Antônio J. R. da Silva; A. Fazzio; Daniel Prata Vieira; Henrique J. P. Freire; K. Capelle

We explore and compare three approximate schemes allowing simple implementation of complex density functionals by making use of self-consistent implementation of simpler functionals: (i) post-local-density approximation (LDA) evaluation of complex functionals at the LDA densities (or those of other simple functionals) (ii) application of a global scaling factor to the potential of the simple functional, and (iii) application of a local scaling factor to that potential. Option (i) is a common choice in density-functional calculations. Option (ii) was recently proposed by Cafiero and Gonzalez [Phys. Rev. A 71, 042505 (2005)]. We here put their proposal on a more rigorous basis, by deriving it, and explaining why it works, directly from the theorems of density-functional theory. Option (iii) is proposed here for the first time. We provide detailed comparisons of the three approaches among each other and with fully self-consistent implementations for Hartree, local-density, generalized-gradient, self-interaction corrected, and meta-generalized-gradient approximations, for atoms, ions, quantum wells, and model Hamiltonians. Scaled approaches turn out to be, on average, better than post approaches, and unlike these also provide corrections to eigenvalues and orbitals. Scaled self-consistency thus opens the possibility of efficient and reliable implementation of density functionals of hitherto unprecedented complexity.


Physical Review B | 2007

Ab initio Monte Carlo simulations applied to a Si 5 cluster

Luana Pedroza; Antônio J. R. da Silva


Bulletin of the American Physical Society | 2014

Local order of liquid water at the electrochemical interface

Marivi Fernandez Serra; Luana Pedroza


Journal of Chemical Physics | 2008

Adiabatic intramolecular movements for water systems.

Luana Pedroza; Antônio J. R. da Silva


Bulletin of the American Physical Society | 2016

First principle simulations of a bias-dependent electrochemical cell

Luana Pedroza; Pedro Brandimarte; Marivi Fernandez-Serra; A. R. Rocha


Bulletin of the American Physical Society | 2016

Effect of charges on the interaction of water with hematite

Fabio Negreiros Ribeiro; Luana Pedroza; Gustavo M. Dalpian


Bulletin of the American Physical Society | 2015

Bias-dependent local structure of water molecules at an electrochemical interface

Luana Pedroza; Pedro Brandimarte; A. R. Rocha; Marivi Fernandez-Serra

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K. Capelle

University of São Paulo

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A. R. Rocha

Spanish National Research Council

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Pedro Brandimarte

Spanish National Research Council

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A. Fazzio

University of São Paulo

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Gustavo M. Dalpian

Universidade Federal do ABC

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