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Synthesis and characterization of chitosan alkyl urea

机译:壳聚糖烷基脲的合成与表征

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摘要

Chitosan is a versatile material employed for various purposes in many fields including the development of chiral stationary phases for enantioseparation. Chitosan alkyl urea is a kind of intermediate used to prepare enantioseparation materials. In order to synthesize the intermediates, in the present work, a new way to prepare chitosan alkyl urea has been established: chitosan was first reacted with methyl chloroformate yielding N-methoxyformylated chitosan, which was then converted to chitosan alkyl urea through amine-ester exchange reaction. With a large excess of methyl chloroformate and primary amine of low stereohindrance, the amino group in chitosan could be almost completely converted to ureido group. The as-prepared chitosan alkyl urea derivatives were characterized by IR, H-1 NMR, C-13 NMR,1H1H COSY and H-1-C-13 HSQC NMR spectra. The chemical shifts of hydrogen and carbon atoms of glucose unit were assigned. It was found that the degree of substitution was obviously lower if cyclopropyl amine, aniline, tert-butyl amine and diethyl amine were used as reactants for the amine-ester exchange reaction. The reason was explained with the aid of theoretical calculations. (C) 2016 Elsevier Ltd. All rights reserved.
机译:壳聚糖是在多种领域中用于各种目的的通用材料,包括用于对映体分离的手性固定相的开发。壳聚糖烷基脲是一种用于制备对映体分离材料的中间体。为了合成中间体,在本工作中,建立了一种制备壳聚糖烷基脲的新方法:首先使壳聚糖与氯甲酸甲酯反应,生成N-甲氧基甲酰化的壳聚糖,然后通过胺-酯交换将其转化为壳聚糖烷基脲。反应。大量过量的氯甲酸甲酯和低立体位的伯胺可使壳聚糖中的氨基几乎完全转化为脲基。所制备的壳聚糖烷基脲衍生物通过IR,H-1 NMR,C-13 NMR,1H1H COZY和H-1-C-13 HSQC NMR表征。分配了葡萄糖单元的氢和碳原子的化学位移。发现如果将环丙胺,苯胺,叔丁胺和二乙胺用作胺-酯交换反应的反应物,则取代度明显降低。通过理论计算解释了原因。 (C)2016 Elsevier Ltd.保留所有权利。

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