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Updated: May 31, 2026

Concurrent Quantitative Conductivity and Mechanical Properties Measurements of Organic Photovoltaic Materials using AFM
Published on: January 23, 2013
Density functional calculations on structural materials for nuclear energy applications and functional materials for
C Domain1, P Olsson, C S Becquart
1EDF R&D, Département MMC Les Renardières, F-77250 Moret sur Loing, France. Laboratoire de Métallurgie Physique et Sciences des Matériaux, UMR CNRS 8517, USTL Bâtiment C6, 59655 Villeneuve d'Ascq cedex, France.
Abstract:
Ab initio density functional theory calculations are carried out in order to predict the evolution of structural materials under aggressive working conditions such as cases with exposure to corrosion and irradiation, as well as to predict and investigate the properties of functional materials for photovoltaic energy applications. Structural metallic materials used in nuclear facilities are subjected to irradiation which induces the creation of large amounts of point defects. These defects interact with each other as well as with the different elements constituting the alloys, which leads to modifications of the microstructure and the mechanical properties. VASP (Vienna Ab initio Simulation Package) has been used to determine the properties of point defect clusters and also those of extended defects such as dislocations. The resulting quantities, such as interaction energies and migration energies, are used in larger scale simulation methods in order to build predictive tools. For photovoltaic energy applications, ab initio calculations are used in order to search for new semiconductors and possible element substitutions for existing ones in order to improve their efficiency.
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