Serna-Escolano, V.; Serrano, M.; Valero, D.; Isabel Rodríguez-López, M.; Gabaldón, J.A.; Castillo, S.; Valverde, J.M.; Zapata, P.J.; Guillén, F.; Martínez-Romero, D.
Thymol Encapsulated into HP-β-Cyclodextrin as an Alternative to Synthetic Fungicides to Induce Lemon Resistance against Sour Rot Decay. Molecules 2020, 25, 4348.
https://doi.org/10.3390/molecules25184348
AMA Style
Serna-Escolano V, Serrano M, Valero D, Isabel Rodríguez-López M, Gabaldón JA, Castillo S, Valverde JM, Zapata PJ, Guillén F, Martínez-Romero D.
Thymol Encapsulated into HP-β-Cyclodextrin as an Alternative to Synthetic Fungicides to Induce Lemon Resistance against Sour Rot Decay. Molecules. 2020; 25(18):4348.
https://doi.org/10.3390/molecules25184348
Chicago/Turabian Style
Serna-Escolano, Vicente, María Serrano, Daniel Valero, María Isabel Rodríguez-López, José Antonio Gabaldón, Salvador Castillo, Juan Miguel Valverde, Pedro Javier Zapata, Fabián Guillén, and Domingo Martínez-Romero.
2020. "Thymol Encapsulated into HP-β-Cyclodextrin as an Alternative to Synthetic Fungicides to Induce Lemon Resistance against Sour Rot Decay" Molecules 25, no. 18: 4348.
https://doi.org/10.3390/molecules25184348
APA Style
Serna-Escolano, V., Serrano, M., Valero, D., Isabel Rodríguez-López, M., Gabaldón, J. A., Castillo, S., Valverde, J. M., Zapata, P. J., Guillén, F., & Martínez-Romero, D.
(2020). Thymol Encapsulated into HP-β-Cyclodextrin as an Alternative to Synthetic Fungicides to Induce Lemon Resistance against Sour Rot Decay. Molecules, 25(18), 4348.
https://doi.org/10.3390/molecules25184348