
Molecularly Imprinted Polymers in Biotechnology
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Controlled radical polymerization techniques for molecular imprinting, by Mark E. ByrneFrom bulk polymers to nanoparticles, by Lei YePost-imprinting and in-cavity functionalization, by Toshifumi TakeuchiCharacterization of MIPs (affinity, selectivity, site heterogeneity...), by Richard AnsellTheoretical aspects and computer modelling, by Ian NichollsMIPs in aqueous environments, by Bin LuMIPs for binding macromolecules, by Kenneth J. SheaSolid phase extraction, by Ecevit YilmazSensors, by Sergey A. PiletskyMIPs for catalysis and synthesis, by Marina ResminiWastewater treatment, by Bo Mattiasso...
Controlled radical polymerization techniques for molecular imprinting, by Mark E. Byrne
From bulk polymers to nanoparticles, by Lei Ye
Post-imprinting and in-cavity functionalization, by Toshifumi Takeuchi
Characterization of MIPs (affinity, selectivity, site heterogeneity...), by Richard Ansell
Theoretical aspects and computer modelling, by Ian Nicholls
MIPs in aqueous environments, by Bin Lu
MIPs for binding macromolecules, by Kenneth J. Shea
Solid phase extraction, by Ecevit Yilmaz
Sensors, by Sergey A. Piletsky
MIPs for catalysis and synthesis, by Marina Resmini
Wastewater treatment, by Bo Mattiasson
MIPs as tools for bioassays, biotransformation and drug delivery, by Meiping Zhao
From bulk polymers to nanoparticles, by Lei Ye
Post-imprinting and in-cavity functionalization, by Toshifumi Takeuchi
Characterization of MIPs (affinity, selectivity, site heterogeneity...), by Richard Ansell
Theoretical aspects and computer modelling, by Ian Nicholls
MIPs in aqueous environments, by Bin Lu
MIPs for binding macromolecules, by Kenneth J. Shea
Solid phase extraction, by Ecevit Yilmaz
Sensors, by Sergey A. Piletsky
MIPs for catalysis and synthesis, by Marina Resmini
Wastewater treatment, by Bo Mattiasson
MIPs as tools for bioassays, biotransformation and drug delivery, by Meiping Zhao