The formation of amylose−polystyrene inclusion complexes via a novel two-step approach is described. In the first-step, styrene was inserted inside the amylose helical cavity, followed by free radical polymerization in the second step. The inclusion complexes were characterized by attenuated total reflection fourier transform infrared spectroscopy (ATR-FTIR), ultraviolet spectroscopy (UV), X-ray diffraction (XRD), atomic force microscopy (AFM), and differential scanning calorimetry (DSC). The formation of polystyrene was confirmed by gel permeation chromatography (GPC). The molecular weight of polystyrene can be varied by using amylose bearing different molar masses. The approach described here is general and could be used to synthesize oth...
Amylose is een lineair polysacharide met α-(14)-glycosidebindingen. De enkele helix V-amylose heeft ...
Several methods were used to investigate the possibility of preparing inclusion complexes between am...
Many ligands can form inclusion complexes with amylose. Their presence induces a conformation change...
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...
A new class of rod-coil block copolymers is synthesized by chemoenzymatic polymerization. In the fir...
Amylose-fatty acid inclusion complexes can be easily prepared by simple mixing in hot aqueous soluti...
This paper reviews the architecture of amylose supramolecules in form of inclusion complexes with sy...
Amylose inclusion complexes were prepared in aqueous solution with the amphiphilic moiety 3-pentadec...
This paper reviews preparation and applications of amylose supramolecules by means of phosphorylase-...
Several methods were used to investigate the possibility of preparing inclusion complexes between am...
Amylose and polytetrahydrofuran (PTHF) are mixed in an aqueous solution to form inclusion complexes....
Amylose inclusion complexes are prepared by complexation of synthetic amylose having a covalently at...
Amylose is een lineair polysacharide met α-(14)-glycosidebindingen. De enkele helix V-amylose heeft ...
Several methods were used to investigate the possibility of preparing inclusion complexes between am...
Many ligands can form inclusion complexes with amylose. Their presence induces a conformation change...
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...
A new class of rod-coil block copolymers is synthesized by chemoenzymatic polymerization. In the fir...
Amylose-fatty acid inclusion complexes can be easily prepared by simple mixing in hot aqueous soluti...
This paper reviews the architecture of amylose supramolecules in form of inclusion complexes with sy...
Amylose inclusion complexes were prepared in aqueous solution with the amphiphilic moiety 3-pentadec...
This paper reviews preparation and applications of amylose supramolecules by means of phosphorylase-...
Several methods were used to investigate the possibility of preparing inclusion complexes between am...
Amylose and polytetrahydrofuran (PTHF) are mixed in an aqueous solution to form inclusion complexes....
Amylose inclusion complexes are prepared by complexation of synthetic amylose having a covalently at...
Amylose is een lineair polysacharide met α-(14)-glycosidebindingen. De enkele helix V-amylose heeft ...
Several methods were used to investigate the possibility of preparing inclusion complexes between am...
Many ligands can form inclusion complexes with amylose. Their presence induces a conformation change...