• Bulletin of the Chinese Ceramic Society
  • Vol. 41, Issue 3, 1063 (2022)
BAI Xiaotong1、2、*, CUI Xiaorong1、2, ZHANG Linrui1、2, and ZHOU Bingqing1、2
Author Affiliations
  • 1[in Chinese]
  • 2[in Chinese]
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    DOI: Cite this Article
    BAI Xiaotong, CUI Xiaorong, ZHANG Linrui, ZHOU Bingqing. Preparation of Sb2Se3 Film and Solar Cells with Different Substrate Inclination by VTD Method[J]. Bulletin of the Chinese Ceramic Society, 2022, 41(3): 1063 Copy Citation Text show less
    References

    [1] LI Y Z, LI F, LIANG G X, et al. Sb2Se3 thin films fabricated by thermal evaporation deposition using the powder prepared via mechanical alloying[J]. Surface and Coatings Technology, 2019, 358: 1013-1016.

    [2] LIU X S, CHEN J, LUO M, et al. Thermal evaporation and characterization of Sb2Se3 thin film for substrate Sb2Se3/CdS solar cells[J]. ACS Applied Materials & Interfaces, 2014, 6(13): 10687-10695.

    [3] YUAN C C, ZHANG L J, LIU W F, et al. Rapid thermal process to fabricate Sb2Se3 thin film for solar cell application[J]. Solar Energy, 2016, 137: 256-260.

    [4] LI D B, YIN X X, GRICE C R, et al. Stable and efficient CdS/Sb2Se3 solar cells prepared by scalable close space sublimation[J]. Nano Energy, 2018, 49: 346-353.

    [5] WEN X X, CHEN C, LU S C, et al. Vapor transport deposition of antimony selenide thin film solar cells with 7.6% efficiency[J]. Nature Communications, 2018, 9: 2179.

    [6] YANG K, LI B, ZENG G G. Effects of substrate temperature and SnO2 high resistive layer on Sb2Se3 thin film solar cells prepared by pulsed laser deposition[J]. Solar Energy Materials and Solar Cells, 2020, 208: 110381.

    [7] YANG K, LI B, ZENG G G. Sb2Se3 thin film solar cells prepared by pulsed laser deposition[J]. Journal of Alloys and Compounds, 2020, 821: 153505.

    [8] ZHANG J W, LIAN W T, YIN Y W, et al. All antimony chalcogenide tandem solar cell[J]. Solar RRL, 2020, 4(4): 2000048.

    [9] NGO T T, CHAVHAN S, KOSTA I, et al. Electrodeposition of antimony selenide thin films and application in semiconductor sensitized solar cells[J]. ACS Applied Materials & Interfaces, 2014, 6(4): 2836-2841.

    [10] LAI Y Q, CHEN Z W, HAN C, et al. Preparation and characterization of Sb2Se3 thin films by electrodeposition and annealing treatment[J]. Applied Surface Science, 2012, 261: 510-514.

    [12] LIU Y Q, ZHANG M, WANG F X, et al. Facile microwave-assisted synthesis of uniform Sb2Se3nanowires for high performance photodetectors[J]. J Mater Chem C, 2014, 2(2): 240-244.

    [13] KONDROTAS R, ZHANG J, WANG C, et al. Growth mechanism of Sb2Se3 thin films for photovoltaic application by vapor transport deposition[J]. Solar Energy Materials and Solar Cells, 2019, 199: 16-23.

    [14] ZHANG L R, QU J J, YU T W, et al. Control of the structure and photoelectrical properties of Cu(InGa)Se2 film by Ga deposition potential in two-step electrodeposition[J]. Journal of Materials Science: Materials in Electronics, 2018, 29(23): 20104-20112.

    BAI Xiaotong, CUI Xiaorong, ZHANG Linrui, ZHOU Bingqing. Preparation of Sb2Se3 Film and Solar Cells with Different Substrate Inclination by VTD Method[J]. Bulletin of the Chinese Ceramic Society, 2022, 41(3): 1063
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