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Pore size engineering in mesoporous silicas using supercritical CO
2
John P. Hanrahan
, Mark P. Copley
, Kirk J. Ziegler
, Trevor R. Spalding
, Michael A. Morris
, David C. Steytler
, Richard K. Heenan
, Ralf Schweins
,
Justin D. Holmes
School of Chemistry
University College Cork
University of East Anglia
Rutherford Appleton Laboratory
Institut
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2
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Material Science
Silicon Dioxide
100%
Pore Size
100%
Mesoporous Silica
100%
Carbon Dioxide
50%
Surface Active Agent
25%
Transmission Electron Microscopy
25%
Crystalline Material
25%
Copolymer
25%
Liquid Crystal
25%
Powder X-Ray Diffraction
25%
Nitrogen Adsorption
25%
Chemical Engineering
Carbon Dioxide
100%
Surfactant
50%
Block Copolymer
50%
Mesopore
50%
Polyethylene Oxides
50%
Engineering
Silicon Dioxide
100%
Engineering
100%
Surfactant
14%
Pore Diameter
14%
Liquid Crystal
14%
Supercritical Carbon Dioxide
14%
Detrimental Effect
14%
X-Ray Powder Diffraction
14%
Condensation
14%