Performance Enhancement in Powder-Fabricated Cu2(ZnSn)Se4 Solar Cell by Roll Compression

Author:

Park Jaehyun1,Nam Hyobin1,Song Bong-Geun1,Burak Darya1,Jang Ho Seong12,Lee Seung Yong12ORCID,Cho So-Hye12ORCID,Park Jong-Ku1

Affiliation:

1. Materials Architecturing Research Center, Korea Institute of Science and Technology, Seoul 02792, Republic of Korea

2. Division of Nanoscience and Technology, KIST School, Korea University of Science and Technology, Seoul 02792, Republic of Korea

Abstract

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%.

Funder

KIST institutional funding

National Research Foundation of Korea

Publisher

MDPI AG

Subject

General Materials Science

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