Scaled Deposition of Ti3C2Tx MXene on Complex Surfaces: Application Assessment as Rear Electrodes for Silicon Heterojunction Solar Cells
by
Erkan Aydin, Jehad K. El-Demellawi, Emre Yarali, Faisal Aljamaan, Simone Sansoni, Atteq ur Rehman, George T. Harrison, Jingxuan Kang, Abdulrahman El-Labban, Michele De Bastiani, Arsalan Razzaq, Emmanuel Van Kerschaver, Thomas G. Allen, Omar F. Mohammed, Thomas D. Anthopoulos, Husam N. Alshareef, Stefaan De Wolf
Article
Year:
2022
DOI:
https://doi.org/10.1021/acsnano.1c08871
Bibliography
Aydin, E., K. El-Demellawi, J., Yarali, E., Aljamaan, F., Sansoni, S., Ur Rehman, A., Harrison, G., Kang, J., El Labban, A., De Bastiani, M., Razzaq, A., Van Kerschaver, E., G. Allen, T., F. Mohammed, O., Anthopoulos, T., N. Alshareef, H., De Wolf, S.
Extra Information
This work, which took place in ACS Nano, introduces the scalability potential of the highly conductive MXene films and assesses their applicability as rear electrodes for silicon heterojunction solar cells.