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Functionalized hollow siliceous spheres (HSSs) have been prepared by surface modification with trimethylchlorosilane (TMCS) for the removal of volatile organic compounds (VOCs).
Here we report a novel TiO2 nanotube array film synthesized by anodization followed by surface modification with nitrogen (N) doped TiO2 nanoparticles using a solvothermal method.
Superhydrophobic oil sorbent was prepared by coating raw kapok fibers with titanium dioxide (TiO2) nanoparticles, followed by surface modification with 1H, 1H, 2H, 2H-perfluorooctyl-triethoxysilane (PTES).
Cycling performance and thermal stability of spinel LiMn2O4 cathode material synthesized by a sol gel method are improved by surface modification with FeF3 through chemical deposition method.
Experimental results show that the flow properties of sand slurries at high volume fractions of sand (>50%) can be significantly enhanced by adding nanoparticles, and by surface modification with polymer/surfactant mixtures.
Moreover, the phase transformation of TiO2 from anatase to rutile can be controlled by surface modification with Na2SO4, resulting in catalysts with activity six times higher than that of P25.
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Improvements in lipofection technique by surface modifications with polyethylene glycol (PEG) have facilitated the safety from degradation in vivo.
Because the concentration and location of H2O2 in eukaryotic cells strongly rely on the types of cells, and cellular compartments [1], specific targeting of tumor cells or organelles could further be achieved by surface modification of HRP@HSNs with monoclonal antibodies or peptides.
Sometimes, targeting is achieved by surface modification of nanocarriers with specific ligands to target cell populations, such as mannan-modified nanoparticles to direct vectors to alveolar macrophages [ 39].
Because of that the self-aggregation was prevented by surface modification of nickel ferrite nanoparticles with citric acid before their deposition on the functionalized silica core and homogenous and continuous NiFe2O4 shell was finally obtained.
Enhanced uptake of porous silica microparticles by bifunctional surface modification with a targeting antibody and a biocompatible polymer.
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