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The method of silica based injection has been employed for a long time and has replaced the polyurethane injection method since the 1970s as a remedy in difficult ground conditions including fractured rock.
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The aim of the present work was to develop the synthesis method of silica-titania xerogel doped with Mo,P-HPC and use it as a sensor material for the solid phase spectrophotometric determination of ascorbic acid in fruit juices, complex vitamin formulations and synthetic urine.
The methods of silica chemical vapor deposition and 5,6-benzoquinoline adsorption can inactivate the external surface of ZSM-5, thus suppressing disproportionation and transalkylation side reactions with which isomerization selectivity and xylene yield increase at the expense of EB conversion and p-xylene yield.
Our research group has also studied on development of a method for silica coating of Au nanoparticles [39, 40, 41, 42].
Sol gel processing is a cheap and versatile method of producing silica on silicon films for planar integrated optics.
As was shown in [21] the "stepwise growth" method of the silica modification by oligomers with different amount of chemically active groups allows one to obtain comb-branched and dendritic-branched polymers.
A method for silica (SiO2) cladding of Ag nanoparticles (NPs) is demonstrated here for high sensitivity and long-term stability when putted in aqueous solution.
There are a few methods for control of silica and calcium carbonate precipitation in geothermal wells and surface equipment.
The encapsulation method of the mesoporous silica SBA-15 doped with N, N′-bis (salicylidene -thiocarbohydrazide (Bsalicylidene -thiocarbohydrazider with SBSTC5.
The recent discovery of a method of forming functionalized silica nanoparticles in situ in an aqueous sol gel process, and then cross-linking the nanoparticles to form a thin film, is an excellent example of a nanoscience approach to coatings.
The Self-assembled NAnophase Particle (SNAP) process is a method of forming functionalized silica nanoparticles in situ in an aqueous-based sol gel process, and then crosslinking the nanoparticles to form a thin film.
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