Rioja-Monllor, L.; Ricote, S.; Bernuy-Lopez, C.; Grande, T.; O’Hayre, R.; Einarsrud, M.-A.
High-Performance La0.5Ba0.5Co1/3Mn1/3Fe1/3O3−δ-BaZr1−zYzO3−δ Cathode Composites via an Exsolution Mechanism for Protonic Ceramic Fuel Cells. Inorganics 2018, 6, 83.
https://doi.org/10.3390/inorganics6030083
AMA Style
Rioja-Monllor L, Ricote S, Bernuy-Lopez C, Grande T, O’Hayre R, Einarsrud M-A.
High-Performance La0.5Ba0.5Co1/3Mn1/3Fe1/3O3−δ-BaZr1−zYzO3−δ Cathode Composites via an Exsolution Mechanism for Protonic Ceramic Fuel Cells. Inorganics. 2018; 6(3):83.
https://doi.org/10.3390/inorganics6030083
Chicago/Turabian Style
Rioja-Monllor, Laura, Sandrine Ricote, Carlos Bernuy-Lopez, Tor Grande, Ryan O’Hayre, and Mari-Ann Einarsrud.
2018. "High-Performance La0.5Ba0.5Co1/3Mn1/3Fe1/3O3−δ-BaZr1−zYzO3−δ Cathode Composites via an Exsolution Mechanism for Protonic Ceramic Fuel Cells" Inorganics 6, no. 3: 83.
https://doi.org/10.3390/inorganics6030083
APA Style
Rioja-Monllor, L., Ricote, S., Bernuy-Lopez, C., Grande, T., O’Hayre, R., & Einarsrud, M. -A.
(2018). High-Performance La0.5Ba0.5Co1/3Mn1/3Fe1/3O3−δ-BaZr1−zYzO3−δ Cathode Composites via an Exsolution Mechanism for Protonic Ceramic Fuel Cells. Inorganics, 6(3), 83.
https://doi.org/10.3390/inorganics6030083