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Cd implantation in α-MoO3: An atomic scale study

Lamellar α-MoO3 crystals were implanted with low fluence of radioactive Cd111m ions at ISOLDE-CERN. Subsequently, we have probed the interaction of the Cd impurity in the lattice with native point defects, such as oxygen vacancies, as a function of annealing temperature using the time differential p...

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Autores principales: Gerami, Adeleh Mokhles, Heiniger-Schell, Juliana, da Silva, E Lora, Costa, Messias S, Costa, Cleidilane S, Monteiro, João G, Pires, José J, Pereira, Daniela R, Díaz-Guerra, Carlos, Carbonari, Artur W, Lorenz, Katharina, Correia, João G
Lenguaje:eng
Publicado: 2023
Acceso en línea:https://dx.doi.org/10.1103/PhysRevMaterials.7.033603
http://cds.cern.ch/record/2856538
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author Gerami, Adeleh Mokhles
Heiniger-Schell, Juliana
da Silva, E Lora
Costa, Messias S
Costa, Cleidilane S
Monteiro, João G
Pires, José J
Pereira, Daniela R
Díaz-Guerra, Carlos
Carbonari, Artur W
Lorenz, Katharina
Correia, João G
author_facet Gerami, Adeleh Mokhles
Heiniger-Schell, Juliana
da Silva, E Lora
Costa, Messias S
Costa, Cleidilane S
Monteiro, João G
Pires, José J
Pereira, Daniela R
Díaz-Guerra, Carlos
Carbonari, Artur W
Lorenz, Katharina
Correia, João G
author_sort Gerami, Adeleh Mokhles
collection CERN
description Lamellar α-MoO3 crystals were implanted with low fluence of radioactive Cd111m ions at ISOLDE-CERN. Subsequently, we have probed the interaction of the Cd impurity in the lattice with native point defects, such as oxygen vacancies, as a function of annealing temperature using the time differential perturbed angular correlations nanoscopic technique. The experimental data were complemented and interpreted by modeling different Cd-defect configurations in α-MoO3 with first-principles density functional theory (DFT). The agreement between experiments and DFT simulations shows that only the interstitial Cd (CdI) prevails in the van der Waals gap, by inducing a polaron effect. Upon raising the annealing temperature, CdI is able to trap hole charge carriers resultant from the oxygen vacancies VO. Oxygen vacancies were found to form most commonly at two-fold coordinated (O2) atoms. According to comparison DFT results with the experimental electric field gradient values (Vzz and η) and the calculated formation energies for different defect complexes, the configuration of CdI with two (O2) vacancies (VO2), located at different planes, is found to be more favorable and stable than the other defect configurations. The electron-polaron formation around the Cd impurity at an interstitial site is enhanced by inducing (O2) vacancies with the creation of hole polaron states.
id cern-2856538
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2023
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spelling cern-28565382023-04-20T20:40:07Zdoi:10.1103/PhysRevMaterials.7.033603http://cds.cern.ch/record/2856538engGerami, Adeleh MokhlesHeiniger-Schell, Julianada Silva, E LoraCosta, Messias SCosta, Cleidilane SMonteiro, João GPires, José JPereira, Daniela RDíaz-Guerra, CarlosCarbonari, Artur WLorenz, KatharinaCorreia, João GCd implantation in α-MoO3: An atomic scale studyLamellar α-MoO3 crystals were implanted with low fluence of radioactive Cd111m ions at ISOLDE-CERN. Subsequently, we have probed the interaction of the Cd impurity in the lattice with native point defects, such as oxygen vacancies, as a function of annealing temperature using the time differential perturbed angular correlations nanoscopic technique. The experimental data were complemented and interpreted by modeling different Cd-defect configurations in α-MoO3 with first-principles density functional theory (DFT). The agreement between experiments and DFT simulations shows that only the interstitial Cd (CdI) prevails in the van der Waals gap, by inducing a polaron effect. Upon raising the annealing temperature, CdI is able to trap hole charge carriers resultant from the oxygen vacancies VO. Oxygen vacancies were found to form most commonly at two-fold coordinated (O2) atoms. According to comparison DFT results with the experimental electric field gradient values (Vzz and η) and the calculated formation energies for different defect complexes, the configuration of CdI with two (O2) vacancies (VO2), located at different planes, is found to be more favorable and stable than the other defect configurations. The electron-polaron formation around the Cd impurity at an interstitial site is enhanced by inducing (O2) vacancies with the creation of hole polaron states.oai:cds.cern.ch:28565382023
spellingShingle Gerami, Adeleh Mokhles
Heiniger-Schell, Juliana
da Silva, E Lora
Costa, Messias S
Costa, Cleidilane S
Monteiro, João G
Pires, José J
Pereira, Daniela R
Díaz-Guerra, Carlos
Carbonari, Artur W
Lorenz, Katharina
Correia, João G
Cd implantation in α-MoO3: An atomic scale study
title Cd implantation in α-MoO3: An atomic scale study
title_full Cd implantation in α-MoO3: An atomic scale study
title_fullStr Cd implantation in α-MoO3: An atomic scale study
title_full_unstemmed Cd implantation in α-MoO3: An atomic scale study
title_short Cd implantation in α-MoO3: An atomic scale study
title_sort cd implantation in α-moo3: an atomic scale study
url https://dx.doi.org/10.1103/PhysRevMaterials.7.033603
http://cds.cern.ch/record/2856538
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