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Effects of nano-confinement on Zn(II) adsorption to nanoporous silica
Joey Nelson
, John R. Bargar
, Laura Wasylenki
, Gordon E. Brown
, Kate Maher
Earth and Sustainability
Research output
:
Contribution to journal
›
Article
›
peer-review
30
Scopus citations
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Keyphrases
Nanoporous Silica
100%
Zn(II)
100%
Nanoconfinement
100%
Zn Adsorption
100%
Silica
50%
Surface Complexation
50%
Adsorption
33%
Surface Coverage
33%
Level Difference
33%
Pore Size
33%
Surface Complexes
33%
Sorption Edge
33%
Nanoporous SiO2
33%
Attendants
16%
One-site
16%
Complex Structure
16%
Proton
16%
Size Reduction
16%
Binding Energy
16%
Isotope Fractionation
16%
Surface Charge
16%
Complex Geometry
16%
Monodentate
16%
One Dimension
16%
Surface Modification
16%
Passivated
16%
Adsorption Reaction
16%
Surface Sites
16%
Nanopore
16%
Edge Structure
16%
Site Reaction
16%
Porous SiO2
16%
Macroporous SiO2
16%
Adsorption Complex
16%
EXAFS Spectra
16%
Surface Releases
16%
Zn(II) Complex
16%
Chemistry
Silicon Dioxide
100%
Nanoporosity
100%
Surface Complexation
100%
Nanoconfinement
100%
Pore Size
66%
Cation
33%
Surface Modification
33%
Binding Energy
33%
Fractionation
33%
Porosity
33%
Macro Porosity
33%
Extended X Ray Absorption Fine Structure Spectrum
33%
Material Science
Silicon Dioxide
100%
Surface Complexation
100%
Pore Size
66%
Extended X-Ray Absorption Fine Structure
33%
Surface Charge
33%
Nanopore
33%