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Nanocarriers based on electrostatic Layer-by-layer (LbL) assembly of CaCO3 nanoparticles (CaCO3 NPs) was investigated.
A three step process, based on electrostatic layer-by-layer deposition, was used to produce oil-in-water emulsions containing submicron (d32≈0.3 μm) oil droplets stabilized by sodium dodecyl sulfate (SDS)–chitosan pectin membranes (100 mM acetic acid, pH 3.0).
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In the work reported by Wang et al., negatively charged 11-mercaptoundecanoic acid (MUA) was initially modified on the gold electrode, following by the attachment of a positively charged redox polymer, poly[(vinylpyridine Os bipyridyl)2Cl2+/3+] and a GOx solution containing CNTs based on an electrostatic layer-by-layer (LBL) technique.
Then negatively-charged graphene oxide (GO) was coated on the surface of the functionalized Fe3O4 nanospheres by electrostatic layer-by-layer self-assembly.
The multilayered interfacial membranes were created using an electrostatic layer-by-layer deposition method.
The discrete gold NPs were deposited onto the oxide surface by electrostatic layer-by-layer self-assembly method.
CdTe QD films were fabricated using electrostatic layer-by-layer self-assembly [ 19].
In a recent work, the materials have successfully been employed for the fabrication of composite organic inorganic multilayer thin films, using electrostatic layer-by-layer self-assembly [ 19].
61– 65 Similar 1D periodic structures can be made using electrostatic layer-by-layer deposition of cationic – anionic polymers by sequential dipping into polyelectrolyte solutions of controlled pH to achieve target layer thickness.
Emphasis is placed on the fabrication of nanostructured films based on a layer-by-layer (LBL) films approach.
Based on layer-by-layer electrostatic deposition, β-carotene bilayer emulsions were prepared by lactoferrin and lactoferrin polyphenol conjugates at pH 7.0.
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