Haseena; Khan, A.; Ghaffar, I.; Baty, R.S.; Abdel-Daim, M.M.; Habib, S.M.; Kanwal, T.; Shah, M.R.
Synthesis of Ribose-Coated Copper-Based Metal–Organic Framework for Enhanced Antibacterial Potential of Chloramphenicol against Multi-Drug Resistant Bacteria. Antibiotics 2021, 10, 1469.
https://doi.org/10.3390/antibiotics10121469
AMA Style
Haseena, Khan A, Ghaffar I, Baty RS, Abdel-Daim MM, Habib SM, Kanwal T, Shah MR.
Synthesis of Ribose-Coated Copper-Based Metal–Organic Framework for Enhanced Antibacterial Potential of Chloramphenicol against Multi-Drug Resistant Bacteria. Antibiotics. 2021; 10(12):1469.
https://doi.org/10.3390/antibiotics10121469
Chicago/Turabian Style
Haseena, Adnan Khan, Iqra Ghaffar, Roua S. Baty, Mohamed M. Abdel-Daim, Shahida M. Habib, Tasmina Kanwal, and Muhammad Raza Shah.
2021. "Synthesis of Ribose-Coated Copper-Based Metal–Organic Framework for Enhanced Antibacterial Potential of Chloramphenicol against Multi-Drug Resistant Bacteria" Antibiotics 10, no. 12: 1469.
https://doi.org/10.3390/antibiotics10121469
APA Style
Haseena, Khan, A., Ghaffar, I., Baty, R. S., Abdel-Daim, M. M., Habib, S. M., Kanwal, T., & Shah, M. R.
(2021). Synthesis of Ribose-Coated Copper-Based Metal–Organic Framework for Enhanced Antibacterial Potential of Chloramphenicol against Multi-Drug Resistant Bacteria. Antibiotics, 10(12), 1469.
https://doi.org/10.3390/antibiotics10121469