Band Gap Engineering of Newly Discovered ZnO/ZnS Polytypic Nanomaterials

Author:

Zagorac Dejan,Zagorac Jelena,Pejić Milan,Matović Branko,Schön Johann Christian

Abstract

We report on a new class of ZnO/ZnS nanomaterials based on the wurtzite/sphalerite architecture with improved electronic properties. Semiconducting properties of pristine ZnO and ZnS compounds and mixed ZnO1−xSx nanomaterials have been investigated using ab initio methods. In particular, we present the results of our theoretical investigation on the electronic structure of the ZnO1−xSx (x = 0.20, 0.25, 0.33, 0.50, 0.60, 0.66, and 0.75) nanocrystalline polytypes (2H, 3C, 4H, 5H, 6H, 8H, 9R, 12R, and 15R) calculated using hybrid PBE0 and HSE06 functionals. The main observations are the possibility of alternative polytypic nanomaterials, the effects of structural features of such polytypic nanostructures on semiconducting properties of ZnO/ZnS nanomaterials, the ability to tune the band gap as a function of sulfur content, as well as the influence of the location of sulfur layers in the structure that can dramatically affect electronic properties. Our study opens new fields of ZnO/ZnS band gap engineering on a multi-scale level with possible applications in photovoltaics, light-emitting diodes, laser diodes, heterojunction solar cells, infrared detectors, thermoelectrics, or/and nanostructured ceramics.

Funder

Ministry of Education, Science and Technological Development of Serbia

Publisher

MDPI AG

Subject

General Materials Science,General Chemical Engineering

Reference121 articles.

1. The System of Mineralogy of James Dwight Dana and Edward Salisbury Dana Yale University 1837–1892;Palache,1944

2. Handbook of Mineralogy;Anthony,2022

3. Colorado Sphalerite

4. Structure and Mineralogy of the Franklin Zinc-Iron-Manganese Deposit, New Jersey

5. Das Ka-Dublett, nebst einer Neubestimmung der Gitterkonstanten einiger Krystalle;Gerlach;Z. Für Phys.,1922

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