This review presents our researches on the preparation and material application of inclusion complexes that comprises an amylose host and polymeric guests through phosphorylase-catalyzed enzymatic polymerization. Amylose is a well-known polysaccharide and forms inclusion complexes with various hydrophobic small molecules. Pure amylose is produced by enzymatic polymerization by using α-d-glucose 1-phosphate as a monomer and maltooligosaccharide as a primer catalyzed by phosphorylase. We determined that a propagating chain of amylose during enzymatic polymerization wraps around hydrophobic polymers present in the reaction system to form inclusion complexes. We termed this polymerization “vine-twining polymerization” because it is similar to t...
A new class of rod-coil block copolymers is synthesized by chemoenzymatic polymerization. In the fir...
In this study, we prepared a new associating polymer, ChMaPLL, by the substitution of the poly(l-ly...
The formation of amylose−polystyrene inclusion complexes via a novel two-step approach is described....
This review presents our researches on the preparation and material application of inclusion complex...
This paper reviews preparation and applications of amylose supramolecules by means of phosphorylase-...
This paper reviews the architecture of amylose supramolecules in form of inclusion complexes with sy...
This review article presents the biomimetic helical inclusion of amylose toward hydrophobic polyeste...
This study investigates inclusion behavior of amylose towards, poly(β-propiolactone) (PPL), that is ...
Enzymatic polymerization has been noted as a powerful method to precisely synthesize polymers with c...
In this review article, the precise synthesis of functional polysaccharide materials using phosphory...
The formation of amylose-polystyrene inclusion complexes via a novel two-step approach is described....
This paper describes the evaluation of the stability of amylose–polymer inclusion complexes under so...
Herein, the synthesis of amylose-coated, temperature-responsive poly(N-vinylcaprolactam) (VCL)-based...
We have previously found that a partially 2-deoxygenated (P2D)-amylose, produced by glucan phosphory...
Amylose is een lineair polysacharide met α-(14)-glycosidebindingen. De enkele helix V-amylose heeft ...
A new class of rod-coil block copolymers is synthesized by chemoenzymatic polymerization. In the fir...
In this study, we prepared a new associating polymer, ChMaPLL, by the substitution of the poly(l-ly...
The formation of amylose−polystyrene inclusion complexes via a novel two-step approach is described....
This review presents our researches on the preparation and material application of inclusion complex...
This paper reviews preparation and applications of amylose supramolecules by means of phosphorylase-...
This paper reviews the architecture of amylose supramolecules in form of inclusion complexes with sy...
This review article presents the biomimetic helical inclusion of amylose toward hydrophobic polyeste...
This study investigates inclusion behavior of amylose towards, poly(β-propiolactone) (PPL), that is ...
Enzymatic polymerization has been noted as a powerful method to precisely synthesize polymers with c...
In this review article, the precise synthesis of functional polysaccharide materials using phosphory...
The formation of amylose-polystyrene inclusion complexes via a novel two-step approach is described....
This paper describes the evaluation of the stability of amylose–polymer inclusion complexes under so...
Herein, the synthesis of amylose-coated, temperature-responsive poly(N-vinylcaprolactam) (VCL)-based...
We have previously found that a partially 2-deoxygenated (P2D)-amylose, produced by glucan phosphory...
Amylose is een lineair polysacharide met α-(14)-glycosidebindingen. De enkele helix V-amylose heeft ...
A new class of rod-coil block copolymers is synthesized by chemoenzymatic polymerization. In the fir...
In this study, we prepared a new associating polymer, ChMaPLL, by the substitution of the poly(l-ly...
The formation of amylose−polystyrene inclusion complexes via a novel two-step approach is described....