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Scaled Deposition of Ti3C2Tx MXene on Complex Surfaces: Application Assessment as Rear Electrodes for Silicon Heterojunction Solar Cells

Articolo
Data di Pubblicazione:
2022
Abstract:
Two-dimensional transition metal carbides (MXenes) are of great interest as electrode materials for a variety of applications, including solar cells, due to their tunable optoelectronic properties, high metallic conductivity, and attractive solution processability. However, thus far, MXene electrodes have only been exploited for lab-scale device applications. Here, to demonstrate the potential of MXene electrodes at an industry-relevant level, we implemented a scalable spray coating technique to deposit highly conductive (ca. 8000 S/cm, at a ca. 55 nm thickness) Ti3C2Tx films (Tx: surface functional groups, i.e., −OH, −O, −F) via an automated spray system. We employed these Ti3C2Tx films as rear electrodes for silicon heterojunction solar cells as a proof of concept. The spray-deposited MXene flakes have formed a conformal coating on top of the indium tin oxide (ITO)-coated random pyramidal textured silicon wafers, leading to >20% power conversion efficiency (PCE) over both medium-sized (4.2 cm2) and large (243 cm2, i.e., industry-sized 6 in. pseudosquare wafers) cell areas. Notably, the Ti3C2Tx-rear-contacted devices have retained around 99% of their initial PCE for more than 600 days of ambient air storage. Their performance is comparable with state-of-the-art solar cells contacted with sputtered silver electrodes. Our findings demonstrate the high-throughput potential of spray-coated MXene-based electrodes for solar cells in addition to a wider variety of electronic device applications.
Tipologia CRIS:
1.1 Articolo in rivista
Keywords:
cost-effective electrodes; industrial-size MXene; large-area devices; textured surfaces; uniform coatings
Elenco autori:
Aydin, E.; El-Demellawi, J. K.; Yarali, E.; Aljamaan, F.; Sansoni, S.; Rehman, A. u.; Harrison, G.; Kang, J.; El Labban, A.; De Bastiani, M.; Razzaq, A.; Van Kerschaver, E.; Allen, T. G.; Mohammed, O. F.; Anthopoulos, T.; Alshareef, H. N.; De Wolf, S.
Link alla scheda completa:
https://iris.unipv.it/handle/11571/1469464
Pubblicato in:
ACS NANO
Journal
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