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Formation of porous silica nanoparticles at higher reaction kinetics

Article ID Journal Published Year Pages File Type
11000795 Powder Technology 2018 30 Pages PDF
Keywords
SAXSUV–VisSurface fractal dimensionrelative standard deviationScattering vectorFrequency distributionUniversal gas constantNitrogen adsorptionMolar volumeIn-situ characterizationReaction temperatureHeating temperatureSurface roughnessSpecific surface areaPorous silicaScattering intensityDensitySurface tension
Related Topics
Physical Sciences and Engineering Chemical Engineering Chemical Engineering (General)
Preview
Formation of porous silica nanoparticles at higher reaction kinetics
Authors
Manuel Meier, Julian Ungerer, Mira Klinge, Hermann Nirschl,
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Journal
Powder Technology
Journal: Powder Technology
Related Categories
SAXS
UV–Vis
Surface fractal dimension
relative standard deviation
Scattering vector
Frequency distribution
Universal gas constant
Nitrogen adsorption
Molar volume
In-situ characterization
Reaction temperature
Heating temperature
Surface roughness
Specific surface area
Porous silica
Scattering intensity
Density
Surface tension
Bioengineering
Catalysis
Chemical Engineering (General)
Chemical Health and Safety
Colloid and Surface Chemistry
Filtration and Separation
Fluid Flow and Transfer Processes
Process Chemistry and Technology
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