4.7 Article

From micro-to macroscopic: Understanding optical properties in zinc-blend-derived materials Cu2ZnYX4(X = S, Se, Te, Y = Si, Ge, Sn) by means of the quantum chemical topology analysis

期刊

JOURNAL OF ALLOYS AND COMPOUNDS
卷 653, 期 -, 页码 140-147

出版社

ELSEVIER SCIENCE SA
DOI: 10.1016/j.jallcom.2015.08.270

关键词

Ab initio calculation; Bonding analysis; Electronic population; Dipolar polarization

资金

  1. CENTEM project, ERDF as part of the Ministry of Education, Youth and Sports OP RDI programme [CZ.1.05/2.1.00/03.0088]
  2. Ministry of Education, Youth and Sports under the National Sustainability Programme I [LO1402]

向作者/读者索取更多资源

Intensive calculations in the framework of the density functional theory (DFT) scheme have been carried out in order to predict accurately the dynamical stability and electronic properties of the zinc-blendderived Cu2ZnYX4(X = S, Se, Te, Y = Si, Ge, Sn) compounds. Emphasis is also placed on the optical properties of the defect chalcopyrite compounds. Advantages of the analysis of the topology of the electron localization function (ELF) to provide microscopic point of view of the chemical bonding in solids are illustrated. A relationship between polarization of bonds and origin-independent atomic contributions to electric dipoles in the Cu2ZnYX4(X = S, Se, Te, Y = Si, Ge, Sn) defect chalcopyrite compounds is highlighted. In fact, what makes these compounds most interesting is a rich collection of S-Y long-distance bond paths. The ELF attractors do not systematically localize on the bond midpoint and their localization depends on electronegativity differences between the atoms forming the X-Y bond and on the nature of the chemical environment. Particularly, we show that the charge transfer remains generally the main contribution to the local bond dipole contribution. The compound which exhibits perturbed S lone pair is the more promising for nonlinear optical properties. (C) 2015 Elsevier B.V. All rights reserved.

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