Gómez, D.; Acosta, J.; López-Sandoval, H.; Torres-Palma, R.A.; Ávila-Torres, Y.
Enantioselective Biomimetic Structures Inspired by Oxi-Dase-Type Metalloenzymes, Utilizing Polynuclear Compounds Containing Copper (II) and Manganese (II) Ions as Building Blocks. Biomimetics 2023, 8, 423.
https://doi.org/10.3390/biomimetics8050423
AMA Style
Gómez D, Acosta J, López-Sandoval H, Torres-Palma RA, Ávila-Torres Y.
Enantioselective Biomimetic Structures Inspired by Oxi-Dase-Type Metalloenzymes, Utilizing Polynuclear Compounds Containing Copper (II) and Manganese (II) Ions as Building Blocks. Biomimetics. 2023; 8(5):423.
https://doi.org/10.3390/biomimetics8050423
Chicago/Turabian Style
Gómez, Didier, Jorge Acosta, Horacio López-Sandoval, Ricardo A. Torres-Palma, and Yenny Ávila-Torres.
2023. "Enantioselective Biomimetic Structures Inspired by Oxi-Dase-Type Metalloenzymes, Utilizing Polynuclear Compounds Containing Copper (II) and Manganese (II) Ions as Building Blocks" Biomimetics 8, no. 5: 423.
https://doi.org/10.3390/biomimetics8050423
APA Style
Gómez, D., Acosta, J., López-Sandoval, H., Torres-Palma, R. A., & Ávila-Torres, Y.
(2023). Enantioselective Biomimetic Structures Inspired by Oxi-Dase-Type Metalloenzymes, Utilizing Polynuclear Compounds Containing Copper (II) and Manganese (II) Ions as Building Blocks. Biomimetics, 8(5), 423.
https://doi.org/10.3390/biomimetics8050423