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Polycarbonate Surface Modification via Aqueous SI-PET-RAFT
Michele Fromel, Christian W. Pester
Chemical Engineering
Research output
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Contribution to journal
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Article
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peer-review
29
Scopus citations
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Dive into the research topics of 'Polycarbonate Surface Modification via Aqueous SI-PET-RAFT'. Together they form a unique fingerprint.
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Keyphrases
Ambient Atmosphere
33%
Antifogging
33%
Aqueous Conditions
33%
Biocompatibility
33%
Biological Devices
33%
Chain Transfer Agent
33%
Continuous Growth
33%
Facile Method
33%
Hydrophilicity
33%
Hydrophobicity
66%
Mechanical Strength
33%
Optical Clarity
33%
Physical Properties
33%
Polycarbonate Substrate
33%
Polycarbonate Surfaces
100%
Polymer Brushes
33%
Popular
33%
Post-consumer Plastic
33%
Reversible Addition-fragmentation Chain Transfer Polymerization
100%
Superhydrophilic
66%
Surface Modification
100%
Temperature Stability
33%
Visible Light
33%
Material Science
Contact Angle
12%
Film
12%
Hydrophilic Polymer
12%
Hydrophobicity
25%
Physical Property
12%
Polycarbonate
100%
Polymer Brush
25%
Surface Modification
100%
Engineering
Chain Transfer
100%
Cloud Computing
12%
Durables
12%
Limitations
12%
Polycarbonate
100%
Surface Water
12%
Temperature Stability
12%
Water Contact Angle
12%