Ben Hadj Hammouda, Y.; Coulibaly, K.; Bathily, A.; Teoh Sook Han, M.; Policar, C.; Delsuc, N.
Improvement of Peptidyl Copper Complexes Mimicking Catalase: A Subtle Balance between Thermodynamic Stability and Resistance towards H2O2 Degradation. Molecules 2022, 27, 5476.
https://doi.org/10.3390/molecules27175476
AMA Style
Ben Hadj Hammouda Y, Coulibaly K, Bathily A, Teoh Sook Han M, Policar C, Delsuc N.
Improvement of Peptidyl Copper Complexes Mimicking Catalase: A Subtle Balance between Thermodynamic Stability and Resistance towards H2O2 Degradation. Molecules. 2022; 27(17):5476.
https://doi.org/10.3390/molecules27175476
Chicago/Turabian Style
Ben Hadj Hammouda, Yaqine, Koudedja Coulibaly, Alimatou Bathily, Magdalene Teoh Sook Han, Clotilde Policar, and Nicolas Delsuc.
2022. "Improvement of Peptidyl Copper Complexes Mimicking Catalase: A Subtle Balance between Thermodynamic Stability and Resistance towards H2O2 Degradation" Molecules 27, no. 17: 5476.
https://doi.org/10.3390/molecules27175476
APA Style
Ben Hadj Hammouda, Y., Coulibaly, K., Bathily, A., Teoh Sook Han, M., Policar, C., & Delsuc, N.
(2022). Improvement of Peptidyl Copper Complexes Mimicking Catalase: A Subtle Balance between Thermodynamic Stability and Resistance towards H2O2 Degradation. Molecules, 27(17), 5476.
https://doi.org/10.3390/molecules27175476