Abstract
We report a modular approach in which a noncovalently cross-linked single chain nanoparticle (SCNP) selectively binds catalyst "cofactors" and substrates to increase both the catalytic activity of a Cu-catalyzed alkyne-azide cycloaddition reaction and the Ru-catalyzed cleavage of allylcarbamate groups compared to the free catalysts.
MeSH terms
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Alkynes / chemistry
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Allyl Compounds / chemistry
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Allyl Compounds / metabolism
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Azides / chemistry
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Catalysis
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Copper / chemistry
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Cycloaddition Reaction
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Glutathione / chemistry
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Nanoparticles / chemistry*
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Ruthenium / chemistry
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Transition Elements / chemistry*
Substances
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Alkynes
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Allyl Compounds
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Azides
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Transition Elements
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Copper
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Ruthenium
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Glutathione