4.5 Article

Single-graded CIGS with narrow bandgap for tandem solar cells

Journal

SCIENCE AND TECHNOLOGY OF ADVANCED MATERIALS
Volume 19, Issue 1, Pages 263-270

Publisher

TAYLOR & FRANCIS LTD
DOI: 10.1080/14686996.2018.1444317

Keywords

Photovoltaics; CIGS; narrow bandgap; CIS; thin-film solar cells; tandem solar cells

Funding

  1. Swiss National Science Foundation (SNF) [NRP70, PV2050, 407040_153976, 407040_153916]
  2. Swiss Federal Office of Energy [SYNERGY: 20NA21_150950]
  3. Competence Centre for Energy and Mobility (CCEM CONNECT-PV)
  4. SNF-NanoTera
  5. Swiss National Science Foundation (SNF) [407040_153976, 407040_153916] Funding Source: Swiss National Science Foundation (SNF)

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Multi-junction solar cells show the highest photovoltaic energy conversion efficiencies, but the current technologies based on wafers and epitaxial growth of multiple layers are very costly. Therefore, there is a high interest in realizing multi-junction tandem devices based on cost-effective thin film technologies. While the efficiency of such devices has been limited so far because of the rather low efficiency of semitransparent wide bandgap top cells, the recent rise of wide bandgap perovskite solar cells has inspired the development of new thin film tandem solar devices. In order to realize monolithic, and therefore current-matched thin film tandem solar cells, a bottom cell with narrow bandgap (similar to 1eV) and high efficiency is necessary. In this work, we present Cu(In,Ga)Se-2 with a bandgap of 1.00eV and a maximum power conversion efficiency of 16.1%. This is achieved by implementing a gallium grading towards the back contact into a CuInSe2 base material. We show that this modification significantly improves the open circuit voltage but does not reduce the spectral response range of these devices. Therefore, efficient cells with narrow bandgap absorbers are obtained, yielding the high current density necessary for thin film multi-junction solar cells. [GRAPHICS] .

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