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Rhenium-linked multiporphyrin assemblies: Synthesis and properties
Joseph T. Hupp
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Corresponding author for this work
Chemistry
Research output
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Chapter in Book/Report/Conference proceeding
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Chapter
45
Scopus citations
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Keyphrases
Porphyrin
100%
Pyridine
100%
Rhenium
100%
Multiporphyrin
100%
Assembly Synthesis
100%
Electron Transfer
50%
Energy Transfer
50%
Porosity
50%
Molecular Scale
50%
Chemical Sensing
50%
Van Der Waals
50%
Chelating Ligands
50%
Catalytic Oxidation
50%
Liquid-liquid Interface
50%
Light-induced
50%
Molecular Sieve
50%
Molecular Square
50%
Layer-by-layer Assembly
50%
2-layer
50%
Electrical Energy Conversion
50%
Zirconium Phosphonate
50%
Induced Power
50%
Film Membrane
50%
Porphyrin Assembly
50%
Chemistry
Rhenium
100%
Porphyrin
100%
Zirconium
33%
Porosity
33%
Energy Conversion
33%
Phosphonate
33%
Chemical Sensor Detection
33%
Liquid-Liquid Interface
33%
Chemistry
33%
Polymerization
33%
Electron Transport
33%
dimer
33%
Material Science
Rhenium
100%
Film
100%
Catalysis
50%
Liquid-Liquid Interface
50%
Zirconium
50%
Polymerization
50%
Electron Transfer
50%