In this work, nanospheres and nanocapsules are precipitated in confined impinging jet mixers through solvent displacement and characterized. Acetone and water are used as the solvent and antisolvent, respectively, together with polymethoxypolyethylene glycol cyanoacrylate-co-hexadecylcyanoacrylate and Miglyol as the copolymer and oil, respectively. Characterization is performed with dynamic light scattering, with electrophoretic measurements, and for the first time with X-ray photoelectron spectroscopy. Results show that the presence of polyethylene glycol chains seems to be more pronounced on the surface of nanospheres than on that of nanocapsules. The thickness of the copolymer layer in nanocapsules ranges from 1 to 10 nm, depending on the value of the oil:copolymer mass ratio. Fast dilution is confirmed to have a positive effect in suppressing aggregation but can induce further copolymer precipitation.
Dynamic light scattering and X-ray photoelectron spectroscopy characterization of PEGylated polymer nanocarriers: Internal structure and surface properties / Celasco, E.; Valente, I.; Marchisio, D. L.; Barresi, Antonello A.. - In: LANGMUIR. - ISSN 0743-7463. - ELETTRONICO. - 30:28(2014), pp. 8326-8335. [10.1021/la501198v]
Dynamic light scattering and X-ray photoelectron spectroscopy characterization of PEGylated polymer nanocarriers: Internal structure and surface properties
Celasco, E.;Valente, I.;Marchisio, D. L.;Barresi, Antonello A.
2014
Abstract
In this work, nanospheres and nanocapsules are precipitated in confined impinging jet mixers through solvent displacement and characterized. Acetone and water are used as the solvent and antisolvent, respectively, together with polymethoxypolyethylene glycol cyanoacrylate-co-hexadecylcyanoacrylate and Miglyol as the copolymer and oil, respectively. Characterization is performed with dynamic light scattering, with electrophoretic measurements, and for the first time with X-ray photoelectron spectroscopy. Results show that the presence of polyethylene glycol chains seems to be more pronounced on the surface of nanospheres than on that of nanocapsules. The thickness of the copolymer layer in nanocapsules ranges from 1 to 10 nm, depending on the value of the oil:copolymer mass ratio. Fast dilution is confirmed to have a positive effect in suppressing aggregation but can induce further copolymer precipitation.File | Dimensione | Formato | |
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https://hdl.handle.net/11583/2974106