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Preparation of Amphoteric N,O-Carboxymethyl Hydroxypropyl Chitosan by a Two-Step Reaction

机译:两步法反应制备两性N,O-羧甲基羟丙基壳聚糖

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摘要

A novel N,O-carboxymethyl hydroxypropyl chitosan (HPCMS) derivative was prepared by a two-step reaction. Watersoluble hydroxypropyl chitosan (HPCS) with a degree of substitution of hydroxypropyl higher than 0.8 was first synthesized by the reaction of chitosan (CS) with propylene oxide (PO) with alkali as a catalyst. Then, amphoteric chitosan derivatives (HPCMS) with a degree of substitution of carboxymethyl ranging from 0.42 to 1.38 were prepared by the reaction of HPCS with chloroacetic acid in an aqueous solution with alkali as a catalyst. The structures of the polymers were characterized by Fourier transform infrared spectroscopy and NMR; this showed that the hydroxypropylation mainly occurred on the -OH groups at the C-6 of CS in the reaction of CS with PO. In the reaction of HPCS with chloroacetic acid, both the -OH and -NH_2 groups of HPCS were susceptible to the carboxymethylation.
机译:采用两步法制备了一种新型的N,O-羧甲基羟丙基壳聚糖(HPCMS)衍生物。首先以壳聚糖(CS)与环氧丙烷(PO)反应为催化剂,合成了羟丙基取代度高于0.8的水溶性羟丙基壳聚糖(HPCS)。然后,以碱为催化剂,在水溶液中用HPCS与氯乙酸反应,制备了羧甲基取代度为0.42-1.38的两性壳聚糖衍生物(HPCMS)。采用傅里叶变换红外光谱和核磁共振等手段对聚合物结构进行了表征;这表明,在CS与PO反应时,羟丙基化主要发生在CS的C-6位的-OH基团上。在HPCS与氯乙酸的反应中,HPCS的-OH和-NH_2基团都容易受到羧甲基化的影响。

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