RodrÃguez-Iznaga, I.; Petranovskii, V.; Castillón-Barraza, F.F.; Fuentes-Moyado, S.; Chávez-Rivas, F.; Pestryakov, A.
Mordenite-Supported Ag+-Cu2+-Zn2+ Trimetallic System: A Variety of Nanospecies Obtained via Thermal Reduction in Hydrogen Followed by Cooling in an Air or Hydrogen Atmosphere. Materials 2023, 16, 221.
https://doi.org/10.3390/ma16010221
AMA Style
RodrÃguez-Iznaga I, Petranovskii V, Castillón-Barraza FF, Fuentes-Moyado S, Chávez-Rivas F, Pestryakov A.
Mordenite-Supported Ag+-Cu2+-Zn2+ Trimetallic System: A Variety of Nanospecies Obtained via Thermal Reduction in Hydrogen Followed by Cooling in an Air or Hydrogen Atmosphere. Materials. 2023; 16(1):221.
https://doi.org/10.3390/ma16010221
Chicago/Turabian Style
RodrÃguez-Iznaga, Inocente, Vitalii Petranovskii, Felipe F. Castillón-Barraza, Sergio Fuentes-Moyado, Fernando Chávez-Rivas, and Alexey Pestryakov.
2023. "Mordenite-Supported Ag+-Cu2+-Zn2+ Trimetallic System: A Variety of Nanospecies Obtained via Thermal Reduction in Hydrogen Followed by Cooling in an Air or Hydrogen Atmosphere" Materials 16, no. 1: 221.
https://doi.org/10.3390/ma16010221
APA Style
RodrÃguez-Iznaga, I., Petranovskii, V., Castillón-Barraza, F. F., Fuentes-Moyado, S., Chávez-Rivas, F., & Pestryakov, A.
(2023). Mordenite-Supported Ag+-Cu2+-Zn2+ Trimetallic System: A Variety of Nanospecies Obtained via Thermal Reduction in Hydrogen Followed by Cooling in an Air or Hydrogen Atmosphere. Materials, 16(1), 221.
https://doi.org/10.3390/ma16010221