Chemical ordering and surface segregation in Ni1-cPtc system: A theoretical study from the alloys to the nanoalloys
Monte Carlo simulations within a Tight-Binding Ising Model (TBIM) have been performed on bulk, surfaces, and nanoclusters of Ni1-cPtc alloys in order to describe and understand the competition between surface segregation and chemical ordering phenomena in nanoalloys. The effective pair interactions...
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doaj-92d86b346af1411295a137f070bbb6922020-11-25T02:02:00ZengElsevierResults in Physics2211-37972019-09-0114Chemical ordering and surface segregation in Ni1-cPtc system: A theoretical study from the alloys to the nanoalloysAbir Hizi0Hedi Garbouj1Christine Mottet2Moncef Said3Laboratoire de la Matière Condensée et Nanosciences (LR11ES40), Faculté des Sciences de Monastir, Université de Monastir, 5019 Monastir, Tunisia; Aix-Marseille Université, CNRS, CINAM UMR 7325, Campus de Luminy, 13288 Marseille, France; Corresponding author at: Laboratoire de la Matière Condensée et Nanosciences (LR11ES40), Faculté des Sciences de Monastir, Université de Monastir, 5019 Monastir, Tunisia.Laboratoire de la Matière Condensée et Nanosciences (LR11ES40), Faculté des Sciences de Monastir, Université de Monastir, 5019 Monastir, TunisiaAix-Marseille Université, CNRS, CINAM UMR 7325, Campus de Luminy, 13288 Marseille, FranceLaboratoire de la Matière Condensée et Nanosciences (LR11ES40), Faculté des Sciences de Monastir, Université de Monastir, 5019 Monastir, TunisiaMonte Carlo simulations within a Tight-Binding Ising Model (TBIM) have been performed on bulk, surfaces, and nanoclusters of Ni1-cPtc alloys in order to describe and understand the competition between surface segregation and chemical ordering phenomena in nanoalloys. The effective pair interactions obtained from the DFT calculations have been applied in Monte Carlo simulations to determine the bulk and alloy surfaces configurations. The order-disorder transition temperatures in the bulk compare well with experimental data and the bulk phase diagram from the model have been compared to that determined experimentally to validate the fit. The (111), (100) and (110) crystallographic orientations surfaces Ni1-cPtc are treated. The three driving forces for the segregation of surfaces have be studied in both diluted limits, together with the phenomenon of segregation at high temperature (in the disordered state) over the entire concentration range. Finally, we analyze the competition between superficial segregation and low temperature chemical order and conclude with a similar approach on truncated octahedra of 1289 and 405 atoms. Keywords: Tight-Binding Ising Model, Alloys surfaces, Nanoalloys, Segregation, Order-disorder transitionhttp://www.sciencedirect.com/science/article/pii/S2211379719316274 |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Abir Hizi Hedi Garbouj Christine Mottet Moncef Said |
spellingShingle |
Abir Hizi Hedi Garbouj Christine Mottet Moncef Said Chemical ordering and surface segregation in Ni1-cPtc system: A theoretical study from the alloys to the nanoalloys Results in Physics |
author_facet |
Abir Hizi Hedi Garbouj Christine Mottet Moncef Said |
author_sort |
Abir Hizi |
title |
Chemical ordering and surface segregation in Ni1-cPtc system: A theoretical study from the alloys to the nanoalloys |
title_short |
Chemical ordering and surface segregation in Ni1-cPtc system: A theoretical study from the alloys to the nanoalloys |
title_full |
Chemical ordering and surface segregation in Ni1-cPtc system: A theoretical study from the alloys to the nanoalloys |
title_fullStr |
Chemical ordering and surface segregation in Ni1-cPtc system: A theoretical study from the alloys to the nanoalloys |
title_full_unstemmed |
Chemical ordering and surface segregation in Ni1-cPtc system: A theoretical study from the alloys to the nanoalloys |
title_sort |
chemical ordering and surface segregation in ni1-cptc system: a theoretical study from the alloys to the nanoalloys |
publisher |
Elsevier |
series |
Results in Physics |
issn |
2211-3797 |
publishDate |
2019-09-01 |
description |
Monte Carlo simulations within a Tight-Binding Ising Model (TBIM) have been performed on bulk, surfaces, and nanoclusters of Ni1-cPtc alloys in order to describe and understand the competition between surface segregation and chemical ordering phenomena in nanoalloys. The effective pair interactions obtained from the DFT calculations have been applied in Monte Carlo simulations to determine the bulk and alloy surfaces configurations. The order-disorder transition temperatures in the bulk compare well with experimental data and the bulk phase diagram from the model have been compared to that determined experimentally to validate the fit. The (111), (100) and (110) crystallographic orientations surfaces Ni1-cPtc are treated. The three driving forces for the segregation of surfaces have be studied in both diluted limits, together with the phenomenon of segregation at high temperature (in the disordered state) over the entire concentration range. Finally, we analyze the competition between superficial segregation and low temperature chemical order and conclude with a similar approach on truncated octahedra of 1289 and 405 atoms. Keywords: Tight-Binding Ising Model, Alloys surfaces, Nanoalloys, Segregation, Order-disorder transition |
url |
http://www.sciencedirect.com/science/article/pii/S2211379719316274 |
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