The promiscuity of enzymes allows for their implementation as catalysts for non-native chemical transformations. Utilizing the redox activity of metalloenzymes under activator regenerated by electron transfer (ARGET) ATRP conditions, well-controlled and defined polymers can be generated. In this chapter, we review bioATRP in solution and on surfaces and provide experimental protocols for hemoglobin-catalyzed ATRP and for surface-initiated biocatalytic ATRP. This chapter highlights the polymerization of acrylate and acrylamide monomers and provides detailed experimental protocols for the characterization of the polymers and of the polymer brushes
Preparation of functional bio-responsive polymer-based materials is the subject of increasing resear...
<p>Preparation of functional bio-responsive polymer-based materials is the subject of increasing res...
Atom transfer radical polymerization (ATRP) methods were developed in water-based media, to grow pol...
The promiscuity of enzymes allows for their implementation as catalysts for non-native chemical tran...
The promiscuity of enzymes allows for their implementation as catalysts for non-native chemical tran...
The advent of controlled radical polymerizations has made polymer science a key discipline for the p...
The affinity of surfaces toward proteins is found to be a key parameter to govern the synthesis of p...
The affinity of surfaces toward proteins is found to be a key parameter to govern the synthesis of p...
Reversible-deactivation radical polymerizations (controlled radical polymerizations) have revolution...
Atom transfer radical polymerization (ATRP) is one of the most broadly applied reversible deactivati...
The preparation of well-defined polymers via aqueous atom transfer radical polymerization (ATRP) is ...
Reversible-deactivation radical polymerizations (controlled radical polymerizations) have revolution...
Reversible-deactivation radical polymerizations (controlled radical polymerizations) have revolution...
<p>Atom transfer radical polymerization (ATRP) is one of the most broadly applied reversible deactiv...
The affinity of surfaces toward proteins is found to be a key parameter to govern the synthesis of p...
Preparation of functional bio-responsive polymer-based materials is the subject of increasing resear...
<p>Preparation of functional bio-responsive polymer-based materials is the subject of increasing res...
Atom transfer radical polymerization (ATRP) methods were developed in water-based media, to grow pol...
The promiscuity of enzymes allows for their implementation as catalysts for non-native chemical tran...
The promiscuity of enzymes allows for their implementation as catalysts for non-native chemical tran...
The advent of controlled radical polymerizations has made polymer science a key discipline for the p...
The affinity of surfaces toward proteins is found to be a key parameter to govern the synthesis of p...
The affinity of surfaces toward proteins is found to be a key parameter to govern the synthesis of p...
Reversible-deactivation radical polymerizations (controlled radical polymerizations) have revolution...
Atom transfer radical polymerization (ATRP) is one of the most broadly applied reversible deactivati...
The preparation of well-defined polymers via aqueous atom transfer radical polymerization (ATRP) is ...
Reversible-deactivation radical polymerizations (controlled radical polymerizations) have revolution...
Reversible-deactivation radical polymerizations (controlled radical polymerizations) have revolution...
<p>Atom transfer radical polymerization (ATRP) is one of the most broadly applied reversible deactiv...
The affinity of surfaces toward proteins is found to be a key parameter to govern the synthesis of p...
Preparation of functional bio-responsive polymer-based materials is the subject of increasing resear...
<p>Preparation of functional bio-responsive polymer-based materials is the subject of increasing res...
Atom transfer radical polymerization (ATRP) methods were developed in water-based media, to grow pol...