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Design guidelines for high-performance particle-based photoanodes for water splitting: lanthanum titanium oxynitride as a model
Landsmann, S., Maegli, A. E., Trottmann, M., Battaglia, C., Weidenkaff, A., & Pokrant, S. (2015). Design guidelines for high-performance particle-based photoanodes for water splitting: lanthanum titanium oxynitride as a model. ChemSusChem, 8(20), 3451-3458. https://doi.org/10.1002/cssc.201500830
Quasi one-dimensional Ag nanostructures on Si(331)–(12 × 1)
Mariotti, N., Didiot, C., Schwier, E. F., Monney, C., Battaglia, C., & Aebi, P. (2015). Quasi one-dimensional Ag nanostructures on Si(331)–(12 × 1). Surface Science, 639, 39-42. https://doi.org/10.1016/j.susc.2015.04.006
Hydrothermal vanadium manganese oxides: anode and cathode materials for lithium-ion batteries
Simões, M., Surace, Y., Yoon, S., Battaglia, C., Pokrant, S., & Weidenkaff, A. (2015). Hydrothermal vanadium manganese oxides: anode and cathode materials for lithium-ion batteries. Journal of Power Sources, 291, 66-74. https://doi.org/10.1016/j.jpowsour.2015.04.156
Activation of nano-Ca<small><sub>2</sub></small>MnO<small><sub>4</sub></small> for electrochemical lithium intercalation
Surace, Y., Simões, M., Karvonen, L., Battaglia, C., Pokrant, S., & Weidenkaff, A. (2015). Activation of nano-Ca2MnO4 for electrochemical lithium intercalation. In J. Augustynski, F. Grosse, D. Kumar, F. Sanchez, C. Santato, X. W. Sun, … T. Yamamoto (Eds.), Materials research society symposium proceedings: Vol. 1805. Symposium SS/TT – fabrication and properties of oxide thin films, nanostructures and interfaces for advanced applications (pp. mrss15-2133233 (6 pp.). https://doi.org/10.1557/opl.2015.742
Molybdenum oxide MoO<SUB>x</SUB>: a versatile hole contact for silicon solar cells
Bullock, J., Cuevas, A., Allen, T., & Battaglia, C. (2014). Molybdenum oxide MoOx: a versatile hole contact for silicon solar cells. Applied Physics Letters, 105(23), 232109 (5 pp.). https://doi.org/10.1063/1.4903467
 

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