4.8 Article

Sb2Se3 Thin-Film Solar Cells Exceeding 10% Power Conversion Efficiency Enabled by Injection Vapor Deposition Technology

期刊

ADVANCED MATERIALS
卷 34, 期 30, 页码 -

出版社

WILEY-V C H VERLAG GMBH
DOI: 10.1002/adma.202202969

关键词

chalcogenides; injection vapor deposition; Sb; Se-2; (3); thin-film solar cells

资金

  1. National Key R&D Program of China [2019YFB1503404]
  2. Natural Science Foundation for Distinguished Young Scholars of Hebei Province of China [F2019201289]
  3. Education Commission of Hebei Province [ZD2019037]
  4. National Natural Science Foundation of China (NSFC) [61804040, U19A2092]

向作者/读者索取更多资源

This study reports the fabrication of compact Sb2Se3 films using injection vapor deposition, resulting in high crystallinity and minimal defects, which leads to improved energy conversion efficiency in solar cells.
Binary Sb2Se3 semiconductors are promising as the absorber materials in inorganic chalcogenide compound photovoltaics due to their attractive anisotropic optoelectronic properties. However, Sb2Se3 solar cells suffer from complex and unconventional intrinsic defects due to the low symmetry of the quasi-1D crystal structure resulting in a considerable voltage deficit, which limits the ultimate power conversion efficiency (PCE). In this work, the creation of compact Sb2Se3 films with strong [00l] orientation, high crystallinity, minimal deep level defect density, fewer trap states, and low non-radiative recombination loss by injection vapor deposition is reported. This deposition technique enables superior films compared with close-spaced sublimation and coevaporation technologies. The resulting Sb2Se3 thin-film solar cells yield a PCE of 10.12%, owing to the suppressed carrier recombination and excellent carrier transport and extraction. This method thus opens a new and effective avenue for the fabrication of high-quality Sb2Se3 and other high-quality chalcogenide semiconductors.

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