Bárány, P.; Oláh, R.S.; Kovács, I.; Czuczi, T.; Szabó, C.L.; Takács, A.; Lajkó, E.; Láng, O.; Kőhidai, L.; Schlosser, G.;
et al. Ferrocene-Containing Impiridone (ONC201) Hybrids: Synthesis, DFT Modelling, In Vitro Evaluation, and Structure–Activity Relationships. Molecules 2018, 23, 2248.
https://doi.org/10.3390/molecules23092248
AMA Style
Bárány P, Oláh RS, Kovács I, Czuczi T, Szabó CL, Takács A, Lajkó E, Láng O, Kőhidai L, Schlosser G,
et al. Ferrocene-Containing Impiridone (ONC201) Hybrids: Synthesis, DFT Modelling, In Vitro Evaluation, and Structure–Activity Relationships. Molecules. 2018; 23(9):2248.
https://doi.org/10.3390/molecules23092248
Chicago/Turabian Style
Bárány, Péter, Rita Szabó Oláh, Imre Kovács, Tamás Czuczi, Csenge Lilla Szabó, Angéla Takács, Eszter Lajkó, Orsolya Láng, László Kőhidai, Gitta Schlosser,
and et al. 2018. "Ferrocene-Containing Impiridone (ONC201) Hybrids: Synthesis, DFT Modelling, In Vitro Evaluation, and Structure–Activity Relationships" Molecules 23, no. 9: 2248.
https://doi.org/10.3390/molecules23092248
APA Style
Bárány, P., Oláh, R. S., Kovács, I., Czuczi, T., Szabó, C. L., Takács, A., Lajkó, E., Láng, O., Kőhidai, L., Schlosser, G., Bősze, S., Mező, G., Hudecz, F., & Csámpai, A.
(2018). Ferrocene-Containing Impiridone (ONC201) Hybrids: Synthesis, DFT Modelling, In Vitro Evaluation, and Structure–Activity Relationships. Molecules, 23(9), 2248.
https://doi.org/10.3390/molecules23092248