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      On the ab initio calculation of vibrational formation entropy of point defect: the case of the silicon vacancy

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      EPJ Photovoltaics
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          Abstract

          Formation entropy of point defects is one of the last crucial elements required to fully describe the temperature dependence of point defect formation. However, while many attempts have been made to compute them for very complicated systems, very few works have been carried out such as to assess the different effects of finite size effects and precision on such quantity. Large discrepancies can be found in the literature for a system as primitive as the silicon vacancy. In this work, we have proposed a systematic study of formation entropy for silicon vacancy in its 3 stable charge states: neutral, +2 and –2 for supercells with size not below 432 atoms. Rationalization of the formation entropy is presented, highlighting importance of finite size error and the difficulty to compute such quantities due to high numerical requirement. It is proposed that the direct calculation of formation entropy of V Si using first principles methods will be plagued by very high computational workload (or large numerical errors) and finite size dependent results.

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          Most cited references62

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          Generalized Gradient Approximation Made Simple

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            Efficient iterative schemes forab initiototal-energy calculations using a plane-wave basis set

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              From ultrasoft pseudopotentials to the projector augmented-wave method

              Physical Review B, 59(3), 1758-1775
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                Author and article information

                Journal
                epjpv
                http://www.epj-pv.org
                EPJ Photovoltaics
                an Open Access Journal in Photovoltaics
                EPJ Photovolt.
                EDP Sciences
                2105-0716
                01 August 2017
                01 August 2017
                2017
                : 8
                : ( publisher-idID: epjpv/2017/01 )
                : 85505
                Affiliations
                [1 ] Institut Photovoltaïque d’Ile-de-France (IF), , 8, rue de la Renaissance, 92160 Antony, France,
                [2 ] Institute for Research and Development of Photovoltaic Energy (IRDEP), UMR 7174 CNRS/EDF R&D/Chimie ParisTech-PSL, , 6 quai Watier, 78401 Chatou, France,
                [3 ] EDF R&D, Departement EFESE, , 6 Quai Watier, 78401 Chatou, France,
                Author notes
                Article
                pv160014
                10.1051/epjpv/2017006
                179ab9bf-54e1-4def-b5fd-fa7f1bb9a8bd
                © P. Seeberger and J. Vidal, published by EDP Sciences, 2017

                This is an Open Access article distributed under the terms of the Creative Commons Attribution License ( http://creativecommons.org/licenses/by/4.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.

                History
                : 4 November 2016
                : 13 June 2017
                Page count
                Figures: 13, Tables: 1, Equations: 5, References: 68, Pages: 12
                Categories
                Theory and modelling
                Topical Issue: Theory and modelling
                Custom metadata
                national-agreement-fr_2017
                yes
                EPJ Photovoltaics 8, 85505 (2017)
                2017
                2017
                2017

                Sustainable & Green chemistry,Materials technology,Semiconductors,Materials for energy,Technical & Applied physics,Renewable energy

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