Materials (Jan 2023)

Performance Enhancement in Powder-Fabricated Cu<sub>2</sub>(ZnSn)Se<sub>4</sub> Solar Cell by Roll Compression

  • Jaehyun Park,
  • Hyobin Nam,
  • Bong-Geun Song,
  • Darya Burak,
  • Ho Seong Jang,
  • Seung Yong Lee,
  • So-Hye Cho,
  • Jong-Ku Park

DOI
https://doi.org/10.3390/ma16031076
Journal volume & issue
Vol. 16, no. 3
p. 1076

Abstract

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Despite the improved conversion efficiency of Cu2(ZnSn)Se4 (CZTSe) solar cells, their roll-to-roll fabrication nonetheless leads to low performance. The selenization time and temperature are typically considered major parameters for a powder-based CZTSe film; meanwhile, the importance of the densification during the roll-to-roll process is often overlooked. The densification process is related to the porosity of the light-absorbing layer, where high porosity lowers cell performance. In this study, we fabricated a dense CZTSe absorber layer as a method of controlling the compression of a powder precursor (Cu1.7(Zn1.2Sn1.0)S4.0 (CZTS)) during the roll-press process. The increased particle packing density of the CZTS layer was crucial in sintering the powder layer into a dense film and preventing severe selenization of the Mo back electrode. The pressed absorber layer of the CZTSe solar cell exhibited a more uniform chemical composition determined using dynamic secondary ion mass spectrometry (SIMS). Under the AM 1.5G illumination condition, the power conversion efficiency of the pressed solar cell was 6.82%, while the unpressed one was 4.90%.

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