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Various metal nanowires have been successfully encapsulated within CNTs, employing mainly two kinds of methods.
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TEM, zeta-potential measurement and selected-area electron diffraction patterns indicated that the dye nanorods were successfully encapsulated within a silica layer using a sol gel process.
Fe3O4, with a lattice parameter a = 8.357 Å and average particle size of 12.5 ± 3.6 nm, was successfully encapsulated within a graphitic structure by a hierarchical co-assembly approach, followed by thermal annealing.
More commendably, a chain of solid powders had been successfully encapsulated using this scalable reaction system.
For example, antibiotics as ampicillin [135], tetracycline hydrochloride [136], or gentamycin [137] have been successfully encapsulated in diverse ENFs.
Nanosized ferroelectric powders have been successfully encapsulated in a thin surrounding shell made of a binary oxide.
To date, numerous antigens (proteins, peptides, lipopeptides, viruses, or plasmid DNA) have been successfully encapsulated into PLGA particles.
NRG was successfully encapsulated reaching encapsulation efficiencies of 92.58 ± 3.84%.
Capecitabine was successfully encapsulated into semi-IPN microspheres and percentage of encapsulation efficiency varied from 79to87879to87
The proteins were successfully encapsulated into the dextran nanoparticle with spherical morphology, suitable particle size, and high encapsulation efficiency.
In the hydrophobic core, eosin and aspirin were successfully encapsulated.
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CEO of Professional Science Editing for Scientists @ prosciediting.com