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The fabrication of a gold nanodisk on the top surface of a silica spacer-coated gold film creates a double-resonance plasmonic substrate, as shown in Fig. 7h, i [51].
Light from a 372 nm diode laser (Toptica iBeamSmart 375-S, set to 1 mW output) was passed through a 1.65 optical density neutral density filter (not shown), reflected off a mirror, and then approximately 17% was reflected off primarily the back surface of a silica cover slip.
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The mechanism of scanning tunneling microscopy (STM) observations of a surface of a silicon oxide (silica) thin film grown on crystalline silicon and its silica/silicon interface were investigated by means of semiempirical quantum chemical calculations.
The approach involved surface growth of a silica layer inspired by diatoms; the interfacial adhesion of the layer to the surface was inspired by mussel adhesion.
To control their size, we generated AgNPs discretely separated on the surface of a modified silica substrate containing silicon hydride groups ≡SiH.
The functionalization was achieved by grafting silanes directly to the surface of silica nanoparticles in silica solutions (both a commercial solution and a self-made silica solution were used).
The FTIR technique, especially with ATR mode, is one of the most effective tools for characterization of surface functionalities at a silica surface, such as Si OH [41].
Polymerization of a di-isocyanate with the amine-modified surface of a sol gel derived mesoporous silica network crosslinks the nanoparticles of the silica skeleton, and reinforces the otherwise fragile framework.
Successful formation of the inclusion complex at the surface of grafted silica suggested a strong adsorption of griseofulvin by means of heterogeneous nucleation of crystals, followed by inclusion complexation taking place between the partners being in close proximity at the surface of silica particles.
The rotaxane molecules were attached by one end to openings of minute holes, a few nanometres in diameter, on the surface of a piece of porous silica.
Piperidine-N-oxyl derivatives (nitroxides), covalently linked to the surface of a high surface area silica (used as model solid for the technique), served as probes in the investigation of the effects of incubation of silica particles with mesothelial cells.
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