Advancement in Copper Indium Gallium Diselenide (CIGS)-Based Thin-Film Solar Cells
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Publisher
Springer Nature Singapore
Link
https://link.springer.com/content/pdf/10.1007/978-981-19-3724-8_2
Reference178 articles.
1. Nakamura, M., Yamaguchi, K., Kimoto, Y., Yasaki, Y., Kato, T., & Sugimoto, H. (2019). Cd-Free Cu(In,Ga)(Se,S)2 thin-film solar cell with record efficiency of 23.35%. IEEE Journal of Photovoltaics, 9, 1863–1867.
2. Reinhard, P., Chirilă, A., Blösch, P., Pianezzi, F., Nishiwaki, S., Buechel, S., & Tiwari, A. N. (2013). Review of progress toward 20% efficiency flexible CIGS solar cells and manufacturing issues of solar modules. IEEE Journal of Photovoltaics, 3, 572–580.
3. Chirilă, A., Reinhard, P., Pianezzi, F., et al. (2013). Potassium-induced surface modification of Cu(In, Ga)Se2 thin films for high-efficiency solar cells. Nature Materials, 12, 1107–1111.
4. Zhang, C., Qi, T., Wang, W., Zhao, C., Xu, S., Ma, M., Feng, Y., Li, W., Chen, M., Yang, C., & Li, W. (2021). High efficiency CIGS solar cells on flexible stainless steel substrate with SiO2 diffusion barrier layer. Solar Energy, 230, 1033–1039.
5. Hahn, H., Frank, G., Klingler, W., Meyer, A., & Strger, G. (1953) Fiber einige tern/ire Chalko genidemit Chalkopyritstruktur. Z. Anorg.. Allg. Chernie, 271, 153.
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