Local pressures in Zn chalcogenide polymorphs

Using the rich polymorphism of ZnX (X: S, Se, Te) compounds, we show how local pressures can be unequivocally determined from i) first-principles total energy calculations, and ii) atomic volumes derived by means of topological analysis of crystalline electron densities. An analogy between atoms and...

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Published in:Europhysics letters Vol. 98; no. 5; p. 56002
Main Authors: Ouahrani, T., Menendez, J. M., Marqués, M., Contreras-García, J., Baonza, V. G., Recio, J. M.
Format: Journal Article
Language:English
Published: EPS, SIF, EDP Sciences and IOP Publishing 01-06-2012
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Abstract Using the rich polymorphism of ZnX (X: S, Se, Te) compounds, we show how local pressures can be unequivocally determined from i) first-principles total energy calculations, and ii) atomic volumes derived by means of topological analysis of crystalline electron densities. An analogy between atoms and mechanical resistors is put forward since these local pressures lead to the inverse of the thermodynamic pressure once their respective inverses are added up. Accordingly, we define the atomic-like mechanical conductance as a measure of the atomic volume reduction for energy unit under pressure, and prove that, in agreement with chemical hardness expectations, Zn has lower values than S, Se, and Te in all the polymorphs of the chalcogenide crystal family.
AbstractList Using the rich polymorphism of ZnX (X: S, Se, Te) compounds, we show how local pressures can be unequivocally determined from i) first-principles total energy calculations, and ii) atomic volumes derived by means of topological analysis of crystalline electron densities. An analogy between atoms and mechanical resistors is put forward since these local pressures lead to the inverse of the thermodynamic pressure once their respective inverses are added up. Accordingly, we define the atomic-like mechanical conductance as a measure of the atomic volume reduction for energy unit under pressure, and prove that, in agreement with chemical hardness expectations, Zn has lower values than S, Se, and Te in all the polymorphs of the chalcogenide crystal family.
Author Ouahrani, T.
Recio, J. M.
Baonza, V. G.
Menendez, J. M.
Contreras-García, J.
Marqués, M.
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  givenname: J. M.
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  givenname: J. M.
  surname: Recio
  fullname: Recio, J. M.
  email: jmrecio@uniovi.es
  organization: Departamento de Química Física y Analítica, Universidad de Oviedo - Oviedo, Spain, EU
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Title Local pressures in Zn chalcogenide polymorphs
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