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Highly branched functional polymer architectures by click-chemistry strategies
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- Journal Article
- A1
- open access
Highly active, thermo-responsive polymeric catalytic system for reuse in aqueous and organic CuAAC reactions
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Highly active, thermo-responsive polymeric catalytic system for reuse in aqueous and organic CuAAC reactions
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Highly functionalized star-shaped polymers via click chemistry design
(2011) -
Polymeric ligands as homogeneous, reusable catalyst systems for copper assisted click chemistry
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Synthesis and self-assembly of amphiphilic chiral poly(amino acid) star polymers
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Polymeric ligands as homogeneous, reusable catalyst systems for copper assisted click chemistry
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Polymeric ligands as homogeneous, reusable catalyst systems for copper assisted click chemistry
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Polymeric ligands as homogeneous, reusable catalyst systems for copper assisted click chemistry
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Star-shaped polyacrylates : highly functionalized architectures via CuAAc click conjugation
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From novel block-like copolymers to reactive nanoparticles: ATRP and "click" chemistry as synthetic tools
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Star-shaped polymer structures: functionalization via CUAAC and HDA approach
(2009) p.74-74 -
ATRP Poly(acrylate) star formation: a comparative study between ESI and MALDI
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ATRP poly(acrylate) star formation: a comparative study between MALDI and ESI mass spectrometry
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Efficient access to multi-arm star block copolymers by a combination of ATRP and RAFT-HDA click chemistry
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Star-shaped polymer structures: functionalization via CuAAC and HDA approach
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Star-shaped polymer structures: functionalization via CUAAC and HDA approach
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From novel block-like copolymers to reactive nanoparticles: ATRP and “click” chemistry as synthetic tools
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Synthesis of functionalized star-shaped polymer structures for the design of reactive nanoparticles
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ATRP-design of novel nanoparticles based on star-shaped polymer structures with reactive end groups