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In this report, zinc oxide nanoparticles (ZnO NPs) decorated reduced graphene oxide (RGO) composite was fabricated by a one-pot approach using supercritical carbon dioxide (scCO2).
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In the present context, a unique approach for preparing silicone hydrogel IPNs is employed using supercritical carbon dioxide (scCO2) technology, which allows injection moulded and extruded silicone elastomers to be applied as substrates and uses scCO2 as an auxiliary solvent to impregnate the hydrophilic monomer into the silicone.
This article presents the fabrication of size-controllable and shape-flexible microcellular high-density polyethylene-stabilized palladium nanoparticles (Pd/m-HDPE) using supercritical foaming, followed by supercritical impregnation.
Mill were extracted using supercritical carbon dioxide (SC-CO2) technique.
Product composition was analyzed using supercritical fluid chromatography.
Similar structure was also realized using supercritical CO2 method with hydrophobic Au NPs (~5 nm).
Table 2 Extraction, recovery and characterization of bioactive compounds using supercritical fluid extraction S. no.
Extraction of essential oils using supercritical CO2 was studied.
Table 1 summarizes different methods to produce liposomes using supercritical fluids.
Continuous hydrothermal synthesis in supercritical water (supercritical synthesis) is a method to prepare metal oxide nanoparticles rapidly and continuously using supercritical water as anti-solvent.
There are several approaches to functionalize mesoporous materials in order to tailor the surface chemistry: one step synthesis by co-condensation, direct silanation of partially hydroxylated surface, controlled hydrolysis and condensation, and silanation using supercritical fluid as the reaction medium.
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