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Synthesis and characterization of thermoplastic chitin derivative N,O-benzyl chitosan

机译:热塑性几丁质衍生物N,O-苄基壳聚糖的合成与表征

摘要

Chitin derivatives are difficult to be melten because of their very strong inter-molecular and intra-molecular hydrogen bonds. In this paper, N, O-benzyl chitosan was synthesized by means of phase-transfer method. The total degree of substitution for this derivative was 0.8 as determined with H-1 NMR and the degree of substitution on nitrogen was 0.3 as determined with elemental analysis. This is a thermoplastic chitin derivative. It's melting point was 470 K as measured with DSC. A viscous isotropic melt occurred at the temperatures between the melting point and the decomposition temperature(513 K) while N,O-benzyl chitosan was heated on a hot stage. DSC results agreed with the results of microscopy observation. The benzyl group can not form hydrogen bonds. It is also non-polar and has larger volume. These factors weaken the interactions between chitosan chains, and therefore decrease the melting point, which was lower than the decomposition temperature. As a result, N,O-benzyl chitosan was able to melt.
机译:几丁质衍生物由于其非常强的分子间和分子内氢键而难以熔融。本文采用相转移法合成了N,O-苄基壳聚糖。用H-1 NMR测定,该衍生物的总取代度为0.8,用元素分析法测定的在氮上的取代度为0.3。这是热塑性几丁质衍生物。用DSC测得的熔点为470K。在高温下加热N,O-苄基壳聚糖的同时,在熔点和分解温度之间(513 K)的温度下出现粘性的各向同性熔体。 DSC结果与显微镜观察结果一致。苄基不能形成氢键。它也是非极性的并且具有更大的体积。这些因素削弱了壳聚糖链之间的相互作用,因此降低了熔点,低于分解温度。结果,N,O-苄基壳聚糖能够熔融。

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