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Analysis of Chain Branch of Polyolefins by a New Proton NMR Approach

机译:质子核磁共振新方法分析聚烯烃的支链

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摘要

The crystallinity of polyethylene, which significantly affects the properties of the polymer, is quite sensitive to the concentration of its branches. Thus, it is necessary to estimate branch concentration with reasonable accuracy. Currently, C-13 NMR and gel permeation chromatography Fourier transform infrared spectroscopy are widely-used analysis methods for the analysis of branch concentration. Despite several advantages, these methods sometimes have limitations. For instance, the preparation of samples for C-13-NMR is tedious because high-concentration samples are required and the time for analysis is greater than 12 h. To more efficiently estimate the branch concentration of polyethylene, we developed a new high field H-1 NMR method with an improved peak resolution by employing (1) homonuclear decoupling and (2) 2D heteronuclear correlation. The new method was observed to significantly reduce the experimental time to similar to 30 min; furthermore, sample preparation was relatively simple because the method did not require high-concentration samples.
机译:聚乙烯的结晶度对聚合物的性能有很大影响,聚乙烯的结晶度对其支链的浓度非常敏感。因此,有必要以合理的精度估计分支浓度。目前,C-13 NMR和凝胶渗透色谱-傅里叶变换红外光谱是分析分支浓度的广泛使用的分析方法。尽管有许多优点,但这些方法有时仍然有局限性。例如,用于C-13-NMR的样品制备非常繁琐,因为需要高浓度的样品并且分析时间大于12小时。为了更有效地估计聚乙烯的支链浓度,我们开发了一种新的高场H-1 NMR方法,该方法通过使用(1)同核去耦和(2)2D异核相关性提高了峰分辨率。观察到该新方法将实验时间显着减少到大约30分钟。此外,样品制备相对简单,因为该方法不需要高浓度样品。

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