Journal article
Applied Surface Science, vol. 512, 2020
Dedicated to study the chemistry and physics of superatomic clusters and nanoscale systems to solve pressing issues in sustainable chemistry, environmental remediation, and clean energy.
Materials and Physical Chemist | Research Scientist at KAUST | Surface Chemist | Former academician
Dedicated to study the chemistry and physics of superatomic clusters and nanoscale systems to solve pressing issues in sustainable chemistry, environmental remediation, and clean energy.
APA
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Azami, M., Jalil, A. A., Hitam, C., Hassan, N. S., Mamat, C., Adnan, R., & Chanlek, N. (2020). Tuning of the electronic band structure of fibrous silica titania with g-C3N4 for efficient Z-scheme photocatalytic activity. Applied Surface Science, 512. https://doi.org/10.1016/j.apsusc.2020.145744
Chicago/Turabian
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Azami, M., A. A. Jalil, C. Hitam, N. S. Hassan, C. Mamat, R. Adnan, and N. Chanlek. “Tuning of the Electronic Band Structure of Fibrous Silica Titania with g-C3N4 for Efficient Z-Scheme Photocatalytic Activity.” Applied Surface Science 512 (2020).
MLA
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Azami, M., et al. “Tuning of the Electronic Band Structure of Fibrous Silica Titania with g-C3N4 for Efficient Z-Scheme Photocatalytic Activity.” Applied Surface Science, vol. 512, 2020, doi:10.1016/j.apsusc.2020.145744.
BibTeX Click to copy
@article{m2020a,
title = {Tuning of the electronic band structure of fibrous silica titania with g-C3N4 for efficient Z-scheme photocatalytic activity},
year = {2020},
journal = {Applied Surface Science},
volume = {512},
doi = {10.1016/j.apsusc.2020.145744},
author = {Azami, M. and Jalil, A. A. and Hitam, C. and Hassan, N. S. and Mamat, C. and Adnan, R. and Chanlek, N.}
}