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PHOTOCHEMICAL REACTIVITY OF MOLECULES TRAPPED IN SOL‐GEL GLASSES
Anny Slama‐Schwok
,
David Avnir
, Michael Ottolenghi
*
*
Corresponding author for this work
Institute of Chemistry
Research output
:
Contribution to journal
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Article
›
peer-review
35
Scopus citations
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Dive into the research topics of 'PHOTOCHEMICAL REACTIVITY OF MOLECULES TRAPPED IN SOL‐GEL GLASSES'. Together they form a unique fingerprint.
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Keyphrases
Photosensitizer
100%
Sol-gel Glass
100%
Photochemical Reactivity
100%
Long-lived
50%
Photoinduced Electron Transfer
50%
Molecular Size
50%
Solar Energy Conversion
50%
Solute
50%
Long-range Interactions
50%
Liquid Phase
50%
Homogeneous Solution
50%
Electron Transfer Reaction
50%
Molecular Charge
50%
Back Electron Transfer
50%
Solar Energy Storage
50%
Long-range Electron Transfer
50%
Photogenerated Radicals
50%
Radical Ion Pair
50%
Engineering
Solar Energy
100%
Energy Conversion
100%
Liquid Phase
100%
Energy Storage
100%
Porosity
100%
Ion Pair
100%
Solute Molecule
100%
Primary Factor
100%
electron transfer reactions
100%
Chemistry
Electron Transport
100%
Porosity
33%
Ion Pair
33%
Radical Ion
33%
Solar Energy Conversion
33%
Molecular Charge
33%
Molecular Size
33%
Material Science
Electron Transfer
100%
Photosensitizer
66%
Chemical Engineering
Spectacle
100%