Costa, J.d.S.; Ramos, R.d.S.; Costa, K.d.S.L.; Brasil, D.d.S.B.; Silva, C.H.T.d.P.d.; Ferreira, E.F.B.; Borges, R.d.S.; Campos, J.M.; Macêdo, W.J.d.C.; Santos, C.B.R.d.
An In Silico Study of the Antioxidant Ability for Two Caffeine Analogs Using Molecular Docking and Quantum Chemical Methods. Molecules 2018, 23, 2801.
https://doi.org/10.3390/molecules23112801
AMA Style
Costa JdS, Ramos RdS, Costa KdSL, Brasil DdSB, Silva CHTdPd, Ferreira EFB, Borges RdS, Campos JM, Macêdo WJdC, Santos CBRd.
An In Silico Study of the Antioxidant Ability for Two Caffeine Analogs Using Molecular Docking and Quantum Chemical Methods. Molecules. 2018; 23(11):2801.
https://doi.org/10.3390/molecules23112801
Chicago/Turabian Style
Costa, Josivan da Silva, Ryan da Silva Ramos, Karina da Silva Lopes Costa, Davi do Socorro Barros Brasil, Carlos Henrique Tomich de Paula da Silva, Elenilze Figueiredo Batista Ferreira, Rosivaldo dos Santos Borges, JoaquÃn MarÃa Campos, Williams Jorge da Cruz Macêdo, and Cleydson Breno Rodrigues dos Santos.
2018. "An In Silico Study of the Antioxidant Ability for Two Caffeine Analogs Using Molecular Docking and Quantum Chemical Methods" Molecules 23, no. 11: 2801.
https://doi.org/10.3390/molecules23112801
APA Style
Costa, J. d. S., Ramos, R. d. S., Costa, K. d. S. L., Brasil, D. d. S. B., Silva, C. H. T. d. P. d., Ferreira, E. F. B., Borges, R. d. S., Campos, J. M., Macêdo, W. J. d. C., & Santos, C. B. R. d.
(2018). An In Silico Study of the Antioxidant Ability for Two Caffeine Analogs Using Molecular Docking and Quantum Chemical Methods. Molecules, 23(11), 2801.
https://doi.org/10.3390/molecules23112801