Sheikh, M.A.K.; Singh, S.; Abdur, R.; Lee, S.-M.; Kim, J.-H.; Nam, H.-S.; Lee, H.; Lee, J.
Effects of the PbBr2:PbI2 Molar Ratio on the Formation of Lead Halide Thin Films, and the Ratio’s Application for High Performance and Wide Bandgap Solar Cells. Materials 2022, 15, 837.
https://doi.org/10.3390/ma15030837
AMA Style
Sheikh MAK, Singh S, Abdur R, Lee S-M, Kim J-H, Nam H-S, Lee H, Lee J.
Effects of the PbBr2:PbI2 Molar Ratio on the Formation of Lead Halide Thin Films, and the Ratio’s Application for High Performance and Wide Bandgap Solar Cells. Materials. 2022; 15(3):837.
https://doi.org/10.3390/ma15030837
Chicago/Turabian Style
Sheikh, Md. Abdul Kuddus, Son Singh, Rahim Abdur, Sung-Min Lee, Jae-Hun Kim, Ho-Seok Nam, Hyunseung Lee, and Jaegab Lee.
2022. "Effects of the PbBr2:PbI2 Molar Ratio on the Formation of Lead Halide Thin Films, and the Ratio’s Application for High Performance and Wide Bandgap Solar Cells" Materials 15, no. 3: 837.
https://doi.org/10.3390/ma15030837
APA Style
Sheikh, M. A. K., Singh, S., Abdur, R., Lee, S.-M., Kim, J.-H., Nam, H.-S., Lee, H., & Lee, J.
(2022). Effects of the PbBr2:PbI2 Molar Ratio on the Formation of Lead Halide Thin Films, and the Ratio’s Application for High Performance and Wide Bandgap Solar Cells. Materials, 15(3), 837.
https://doi.org/10.3390/ma15030837