Published October 26, 2015 | Version v1
Journal article

Detection of Cu2Zn5SnSe8 and Cu2Zn6SnSe9 phases in co-evaporated Cu2ZnSnSe4 thin-films

  • 1. Max-Planck-Institut für Eisenforschung GmbH, Max-Planck-Straße 1, 40237 Düsseldorf (Germany)
  • 2. Institut Lumière Matière (UMR5306) and ETSF, Univerité Lyon 1-CRNS, Université de Lyon, F-69622 Villeurbanne (France)
  • 3. Laboratory for Photovoltaics, University of Luxembourg, 41, rue du Brill, L-4422 Belvaux (Luxembourg)

Description

Cu2ZnSnSe4 thin-films for photovoltaic applications are investigated using combined atom probe tomography and ab initio density functional theory. The atom probe studies reveal nano-sized grains of Cu2Zn5SnSe8 and Cu2Zn6SnSe9 composition, which cannot be assigned to any known phase reported in the literature. Both phases are considered to be metastable, as density functional theory calculations yield positive energy differences with respect to the decomposition into Cu2ZnSnSe4 and ZnSe. Among the conceivable crystal structures for both phases, a distorted zinc-blende structure shows the lowest energy, which is a few tens of meV below the energy of a wurtzite structure. A band gap of 1.1 eV is calculated for both the Cu2Zn5SnSe8 and Cu2Zn6SnSe9 phases. Possible effects of these phases on solar cell performance are discussed

Additional details

Identifiers

Publishing Information

Journal Title
Applied Physics Letters
Journal Volume
107
Journal Issue
17
Journal Page Range
p. 172102-172102.5
ISSN
0003-6951
CODEN
APPLAB

Optional Information

Notes
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