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首页> 外文期刊>Russian journal of physical chemistry, B. >Determination of Structural and Dynamic Characteristics of Biodegradable Polymers by the NMR Relaxation Method
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Determination of Structural and Dynamic Characteristics of Biodegradable Polymers by the NMR Relaxation Method

机译:核磁共振弛豫法测定可生物降解聚合物的结构和动力学特性

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摘要

A theory of the NMR spectra of heterogeneous polymer systems is proposed that makes it possible to simulate signals observed over a wide temperature range with account of spectral diffusion. Based on this theory, a technique of rapid analysis of molecular structure parameters, including the degree of crystallinity and NMR line shape, is developed. The degree of crystallinity is demonstrated to be a linear function of the area under the NMR spectrum. It is shown that this dependence, universal for a given substance, makes it possible to reliably determine the degree of crystallinity over a wide temperature range (or the fraction of low- molecular additives in composites). The NMR spectra of chitosan is simulated and compared to experimental data. The universal dependence of the degree of crystallinity on the area under the spectrum of chitosan is calculated. A comparison with experimental signals allowed determining the degree of crystallinity.
机译:提出了异质聚合物系统NMR光谱的理论,该理论使得可以模拟在宽温度范围内观察到的信号(考虑到光谱扩散)。基于此理论,开发了一种快速分析分子结构参数(包括结晶度和NMR线形)的技术。结晶度证明是NMR光谱下面积的线性函数。结果表明,对于给定物质而言,这种依赖性是普遍存在的,这使得可以可靠地确定宽温度范围内的结晶度(或复合物中低分子添加剂的比例)。模拟了壳聚糖的NMR光谱并将其与实验数据进行比较。计算了结晶度对壳聚糖谱下面积的普遍依赖性。与实验信号的比较允许确定结晶度。

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