Cu3MCh3 (M = Sb, Bi; Ch = S, Se) as candidate solar cell absorbers: Insights from theory
Citation:
Kehoe, A.B., Temple, D.J., Watson, G.W., Scanlon, D.O., Cu3MCh3 (M = Sb, Bi; Ch = S, Se) as candidate solar cell absorbers: Insights from theory, Physical Chemistry Chemical Physics, 15, 37, 2013, 15477-15484Download Item:

Abstract:
As the thin film photovoltaic sector continues to expand, there is an emerging need to base these
technologies on abundant, low cost materials in place of the expensive, rare, or toxic elements such as
Te, In, or Cd that currently constitute the industry standards. To this end, the geometric and electronic
structure of four materials comprising low cost, earth abundant elements (Cu
3
SbS
3
,Cu
3
SbSe
3
,Cu
3
BiS
3
,
and Cu
3
BiSe
3
) are investigated with the screened hybrid exchange?correlation functional HSE06 and
their candidacy for use as absorber materials assessed. The materials are shown to exhibit low VBM
effective masses, due partially to the presence of lone pairs that originate from the Sb and Bi states.
Although all four materials possess indirect fundamental band gaps, calculated optical absorbance
shows direct transitions close in energy. Optical band gaps within the visible-light spectrum are also
predicted for three of the systems, (Cu
3
SbSe
3
,Cu
3
BiS
3
and Cu
3
BiSe
3
) making them promising candidates
for PV applications
Sponsor
Grant Number
Science Foundation Ireland (SFI)
6/IN.1/I92
Science Foundation Ireland (SFI)
06/IN.1/I92/EC07
Author's Homepage:
http://people.tcd.ie/watsongDescription:
PUBLISHED
Author: WATSON, GRAEME
Type of material:
Journal ArticleCollections:
Series/Report no:
Physical Chemistry Chemical Physics15
37
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PhysicsDOI:
http://dx.doi.org/10.1039/c3cp52482eLicences: