2004•MacromoleculesRequires access

Synthesis and Characterization of Chitosan N-Betainates Having Various Degrees of Substitution

Jukka Holappa, Tapio Nevalainen, Jouko E. Savolainen, Pasi Soininen, Matti A. Elomaa, Rustam Safin, Sari Suvanto, Tuula T. Pakkanen, Már Másson, Þorsteinn Loftsson, Tomi Järvinen

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Abstract

An efficient five-step synthetic route was developed for full N-substitution of chitosan with a quaternary betaine moiety. The developed synthetic procedure can also be controlled to produce chitosan N -betainates having lesser degrees of substitution. 6- O -Triphenylmethylchitosan, which is highly soluble in organic solvents, was used as an intermediate for N -acylation reactions. Intermediate products were characterized by 13 C CP/MAS NMR, FT-IR, and elemental analysis. The water-soluble quaternary chitosan N -betainates were thoroughly characterized by 1 H NMR and 13 C NMR and by 2D 1 H− 1 H COSY NMR and 13 H− 1 H HSQC NMR. Degrees of substitution were determined from the 1 H NMR spectra. A significant degradation of the polysaccharide backbone during the synthetic procedure was determined by GPC with a light scattering detector.

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An efficient five-step synthetic route was developed for full N-substitution of chitosan with a quaternary betaine moiety. The developed synthetic procedure can also be controlled to produce chitosan N -betainates having lesser degrees of substitution. 6- O -Triphenylmethylchitosan, which is highly soluble in organic solvents, was used as an intermediate for N -acylation reactions. Intermediate products were characterized by 13 C CP/MAS NMR, FT-IR, and elemental analysis. The water-soluble quaternary chitosan N -betainates were thoroughly characterized by 1 H NMR and 13 C NMR and by 2D 1 H− 1 H COSY NMR and 13 H− 1 H HSQC NMR. Degrees of substitution were determined from the 1 H NMR spectra. A significant degradation of the polysaccharide backbone during the synthetic procedure was determined by GPC with a light scattering detector.

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Available abstract

An efficient five-step synthetic route was developed for full N-substitution of chitosan with a quaternary betaine moiety. The developed synthetic procedure can also be controlled to produce chitosan N -betainates having lesser degrees of substitution. 6- O -Triphenylmethylchitosan, which is highly soluble in organic solvents, was used as an intermediate for N -acylation reactions. Intermediate products were characterized by 13 C CP/MAS NMR, FT-IR, and elemental analysis. The water-soluble quaternary chitosan N -betainates were thoroughly characterized by 1 H NMR and 13 C NMR and by 2D 1 H− 1 H COSY NMR and 13 H− 1 H HSQC NMR. Degrees of substitution were determined from the 1 H NMR spectra. A significant degradation of the polysaccharide backbone during the synthetic procedure was determined by GPC with a light scattering detector.

Key concepts: Heteronuclear single quantum coherence spectroscopy, Chemistry, Carbon-13 NMR, Moiety, Chitosan, Proton NMR, Betaine, Acylation

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