Revealing composition and structure dependent deep-level defect in antimony trisulfide photovoltaics

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Abstract

Antimony trisulfide (Sb2S3) is a kind of emerging light-harvesting material with excellent stability and abundant elemental storage. Due to the quasi-one-dimensional symmetry, theoretical investigations have pointed out that there exist complicated defect properties. However, there is no experimental verification on the defect property. Here, we conduct optical deep-level transient spectroscopy to investigate defect properties in Sb2S3 and show that there are maximum three kinds of deep-level defects observed, depending on the composition of Sb2S3. We also find that the Sb-interstitial (Sbi) defect does not show critical influence on the carrier lifetime, indicating the high tolerance of the one-dimensional crystal structure where the space of (Sb4S6)n ribbons is able to accommodate impurities to certain extent. This study provides basic understanding on the defect properties of quasi-one-dimensional materials and a guidance for the efficiency improvement of Sb2S3 solar cells.

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Lian, W., Jiang, C., Yin, Y., Tang, R., Li, G., Zhang, L., … Chen, T. (2021). Revealing composition and structure dependent deep-level defect in antimony trisulfide photovoltaics. Nature Communications , 12(1). https://doi.org/10.1038/s41467-021-23592-0

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