2023
DOI: 10.26434/chemrxiv-2023-f4k03
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Monolithic two-terminal tandem solar cells using Sb2S3 and solution-processed PbS quantum dots achieving an open-circuit potential beyond 1.1 V

Abstract: Multijunction solar cells show the prospect to raise the theoretical efficiency limit of single junction solar cells by minimizing transmissive losses of large bandgap and emissive losses of lower bandgap absorber solar cells. In solar cell applications, Sb2S3 is considered an attractive absorber due to its elemental abundance, stability, and high absorption coefficient in the visible range of the solar spectrum, yet with a band gap of 1.7 eV it is transmissive for near-IR and IR photons. Using it as the top c… Show more

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“…Kim et al combined QDSC with the organic solar cell, resulting in a 2T organic/PbS CQD tandem solar cell with a PCE of 13.7%. 59 Crisp et al 60 and Kern et al 61 have developed CdTe/PbS CQD and Sb 2 S 3 /PbS CQD tandem solar cells and the PCE values of their devices have reached 4.7% and 5.64%, respectively. The PCE of the 2T Sb 2 S 3 /PbS CQD tandem solar cell presented by Kern et al has surpassed those of the control devices (Sb 2 S 3 and PbS CQD single junction devices).…”
Section: Xihua Wangmentioning
confidence: 99%
“…Kim et al combined QDSC with the organic solar cell, resulting in a 2T organic/PbS CQD tandem solar cell with a PCE of 13.7%. 59 Crisp et al 60 and Kern et al 61 have developed CdTe/PbS CQD and Sb 2 S 3 /PbS CQD tandem solar cells and the PCE values of their devices have reached 4.7% and 5.64%, respectively. The PCE of the 2T Sb 2 S 3 /PbS CQD tandem solar cell presented by Kern et al has surpassed those of the control devices (Sb 2 S 3 and PbS CQD single junction devices).…”
Section: Xihua Wangmentioning
confidence: 99%