Garagnani, D.; De Padova, P.; Ottaviani, C.; Quaresima, C.; Generosi, A.; Paci, B.; Olivieri, B.; Jałochowski, M.; Krawiec, M.
Evidence of sp2-like Hybridization of Silicon Valence Orbitals in Thin and Thick Si Grown on α-Phase Si(111)√3 × √3R30°-Bi. Materials 2022, 15, 1730.
https://doi.org/10.3390/ma15051730
AMA Style
Garagnani D, De Padova P, Ottaviani C, Quaresima C, Generosi A, Paci B, Olivieri B, Jałochowski M, Krawiec M.
Evidence of sp2-like Hybridization of Silicon Valence Orbitals in Thin and Thick Si Grown on α-Phase Si(111)√3 × √3R30°-Bi. Materials. 2022; 15(5):1730.
https://doi.org/10.3390/ma15051730
Chicago/Turabian Style
Garagnani, David, Paola De Padova, Carlo Ottaviani, Claudio Quaresima, Amanda Generosi, Barbara Paci, Bruno Olivieri, Mieczysław Jałochowski, and Mariusz Krawiec.
2022. "Evidence of sp2-like Hybridization of Silicon Valence Orbitals in Thin and Thick Si Grown on α-Phase Si(111)√3 × √3R30°-Bi" Materials 15, no. 5: 1730.
https://doi.org/10.3390/ma15051730
APA Style
Garagnani, D., De Padova, P., Ottaviani, C., Quaresima, C., Generosi, A., Paci, B., Olivieri, B., Jałochowski, M., & Krawiec, M.
(2022). Evidence of sp2-like Hybridization of Silicon Valence Orbitals in Thin and Thick Si Grown on α-Phase Si(111)√3 × √3R30°-Bi. Materials, 15(5), 1730.
https://doi.org/10.3390/ma15051730