Szlaużys, M.; Ostrowski, K.; Nowak, D.; Prukała, W.; Starzyk, J.; Jasiewicz, B.; Mrówczyńska, L.
Hybrid Uracil Derivatives with Caffeine and Gramine Obtained via Click Chemistry as Potential Antioxidants and Inhibitors of Plant Pathogens. Molecules 2025, 30, 2714.
https://doi.org/10.3390/molecules30132714
AMA Style
Szlaużys M, Ostrowski K, Nowak D, Prukała W, Starzyk J, Jasiewicz B, Mrówczyńska L.
Hybrid Uracil Derivatives with Caffeine and Gramine Obtained via Click Chemistry as Potential Antioxidants and Inhibitors of Plant Pathogens. Molecules. 2025; 30(13):2714.
https://doi.org/10.3390/molecules30132714
Chicago/Turabian Style
Szlaużys, Milda, Kamil Ostrowski, Damian Nowak, Wiesław Prukała, Justyna Starzyk, Beata Jasiewicz, and Lucyna Mrówczyńska.
2025. "Hybrid Uracil Derivatives with Caffeine and Gramine Obtained via Click Chemistry as Potential Antioxidants and Inhibitors of Plant Pathogens" Molecules 30, no. 13: 2714.
https://doi.org/10.3390/molecules30132714
APA Style
Szlaużys, M., Ostrowski, K., Nowak, D., Prukała, W., Starzyk, J., Jasiewicz, B., & Mrówczyńska, L.
(2025). Hybrid Uracil Derivatives with Caffeine and Gramine Obtained via Click Chemistry as Potential Antioxidants and Inhibitors of Plant Pathogens. Molecules, 30(13), 2714.
https://doi.org/10.3390/molecules30132714