UV-Engineered Oxygen Vacancies in MoO(X) Interlayers Enable 24.15% Efficiency for Crystalline Silicon Solar Cells.

Yang L, Lu W, Li J, Chen S, Liu T, Yuan D, Wang Y, Zhu J, Yan H, Zhang Y, Kang Q

Open source

DOI
10.3390/ma18225167
Published
2025 Nov 13
Container
Materials (Basel, Switzerland)
Publisher
Not recorded
Open access
yes

Credibility signals

limited evidence Score 45/100 under policy 1.0.0. This is a metadata assessment, not a judgment of the paper's conclusions.

Show all credibility signals

Cite this work

BibTeX

@article{allodium:10.3390/ma18225167,
  title = {UV-Engineered Oxygen Vacancies in MoO(X) Interlayers Enable 24.15\% Efficiency for Crystalline Silicon Solar Cells.},
  author = {Yang L and Lu W and Li J and Chen S and Liu T and Yuan D and Wang Y and Zhu J and Yan H and Zhang Y and Kang Q},
  year = {2025},
  journal = {Materials (Basel, Switzerland)},
  doi = {10.3390/ma18225167},
  url = {https://doi.org/10.3390/ma18225167}
}

RIS

TY  - JOUR
TI  - UV-Engineered Oxygen Vacancies in MoO(X) Interlayers Enable 24.15% Efficiency for Crystalline Silicon Solar Cells.
AU  - Yang L
AU  - Lu W
AU  - Li J
AU  - Chen S
AU  - Liu T
AU  - Yuan D
AU  - Wang Y
AU  - Zhu J
AU  - Yan H
AU  - Zhang Y
AU  - Kang Q
PY  - 2025
JO  - Materials (Basel, Switzerland)
DO  - 10.3390/ma18225167
UR  - https://doi.org/10.3390/ma18225167
ER  - 

APA

L, Y., W, L., J, L., S, C., T, L., D, Y., Y, W., J, Z., H, Y., Y, Z., & Q, K. (2025). UV-Engineered Oxygen Vacancies in MoO(X) Interlayers Enable 24.15% Efficiency for Crystalline Silicon Solar Cells.. Materials (Basel, Switzerland). https://doi.org/10.3390/ma18225167

Source records