Manrique Rodriguez, N.A.; Costa, M.; Di Masi, S.; Zaleski, C.; GarcÃa-Cruz, A.; Mele, G.; Paradiso, V.M.; Piletsky, S.; Malitesta, C.; De Benedetto, G.E.
Adsorption Isotherm Analysis for Hybrid Molecularly Imprinted Polymeric Gold-Decorated Nanoparticles Suitable for Reliable Quantification of Gluconic Acid in Wine. Nanomaterials 2025, 15, 211.
https://doi.org/10.3390/nano15030211
AMA Style
Manrique Rodriguez NA, Costa M, Di Masi S, Zaleski C, GarcÃa-Cruz A, Mele G, Paradiso VM, Piletsky S, Malitesta C, De Benedetto GE.
Adsorption Isotherm Analysis for Hybrid Molecularly Imprinted Polymeric Gold-Decorated Nanoparticles Suitable for Reliable Quantification of Gluconic Acid in Wine. Nanomaterials. 2025; 15(3):211.
https://doi.org/10.3390/nano15030211
Chicago/Turabian Style
Manrique Rodriguez, Nelson Arturo, Marco Costa, Sabrina Di Masi, Christopher Zaleski, Alvaro GarcÃa-Cruz, Giuseppe Mele, Vito Michele Paradiso, Sergey Piletsky, Cosimino Malitesta, and Giuseppe Egidio De Benedetto.
2025. "Adsorption Isotherm Analysis for Hybrid Molecularly Imprinted Polymeric Gold-Decorated Nanoparticles Suitable for Reliable Quantification of Gluconic Acid in Wine" Nanomaterials 15, no. 3: 211.
https://doi.org/10.3390/nano15030211
APA Style
Manrique Rodriguez, N. A., Costa, M., Di Masi, S., Zaleski, C., GarcÃa-Cruz, A., Mele, G., Paradiso, V. M., Piletsky, S., Malitesta, C., & De Benedetto, G. E.
(2025). Adsorption Isotherm Analysis for Hybrid Molecularly Imprinted Polymeric Gold-Decorated Nanoparticles Suitable for Reliable Quantification of Gluconic Acid in Wine. Nanomaterials, 15(3), 211.
https://doi.org/10.3390/nano15030211