The Investigation of Photovoltaic and Electrical Properties of Bi Doped CTS/Si Hetero-Junction Structure for the Solar Cell Application
Abstract
Keywords
Target pellet, Doped, Bi doped CTS, Thin film, Ball milling, PLD.
Supporting Institution
Project Number
Thanks
References
- [1] Berg D.M., et al., Raman analysis of monoclinic Cu2SnS3 thin films. Applied Physics Letters, 100(19) (20212) 192103.
- [2] Bourgès C., et al., Low thermal conductivity in ternary Cu4Sn7S16 compound. Acta Materialia, 97 (2015) 180-190.
- [3] Fu L., et al., Graphene-encapsulated copper tin sulfide submicron spheres as high-capacity binder-free anode for lithium-ion batteries. (2017).
- [4] Alias M., et al., Synthesis Cu2SnS3 and Cu3SnS4 nanopowder and studying the composition, structural and morphological properties. Journal of Non-Oxide Glasses, 8(4) (2016) 93-97.
- [5] Lokhande A., et al., Development of Cu2SnS3 (CTS) thin film solar cells by physical techniques: A status review. Solar Energy Materials and Solar Cells, 153 (2016) 84-107.
- [6] Akaki Y., Matsuo H., Yoshino K., Structural, electrical and optical properties of Bi‐doped CuInS2 thin films grown by vacuum evaporation method. physica status solidi c, (8) (2006) 2597-2600.
- [7] Chantana J., et al., Bismuth‐doped Cu (In, Ga) Se2 absorber prepared by multi‐layer precursor method and its solar cell. physica status solidi (c), 12(6) (2015) 680-683.
- [8] Rawat K., Shishodia P., Enhancement of photosensitivity in bismuth doped Cu2ZnSnS4 thin films. Physica status solidi (RRL)–Rapid Research Letters, 10(12) (2016) 890-894.
- [9] Chen F.-S., et al., Cu (In, Ga) Se2 thin films codoped with sodium and bismuth ions for the use in the solar cells. Journal of Nanomaterials, 2015. 2015.
- [10] Chalapathi U., Poornaprakash B., Park S. H., Antimony induced crystal growth for large-grained Cu2SnS3 thin films for photovoltaics. Journal of Power Sources, 426 (2019) 84-92.