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首页> 外文期刊>Journal of mass spectrometry: JMS >Determination of primary bond scissions by mass spectrometric analysis of ultrasonic degradation products of poly(ethylene oxide-block-propylene oxide) copolymers
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Determination of primary bond scissions by mass spectrometric analysis of ultrasonic degradation products of poly(ethylene oxide-block-propylene oxide) copolymers

机译:质谱分析聚环氧乙烷-嵌段-环氧丙烷共聚物的超声降解产物,确定一次键断裂

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摘要

Ultrasonic degradation of poly(ethyleneoxide-block-propyleneoxide) copolymers consisting of a hydrophilic and a hydrophobic portion was studied with the aim to determine the location of bonds involved in the initial scission of the copolymers. LC-APCI-IT-MS and LC-APCI-orbitrap-MS were used for the detailed structural analysis of degradation products. The results indicated that initial bond scissions occurred principally at the boundary regions between backbones of polyethylene oxide (PEO) and polypropylene oxide (PPO) chains. Further structural analysis revealed the presence of oxygen adducts in the degradation products. Comparison with a thermal degradation carried out in helium atmosphere, one can conclude that the oxygen adducts are formed by radical reaction with water or dissolving oxygen molecules. The study demonstrated that chemical reactions as well as physical bond stress scissions are involved in the ultrasonic degradation of the copolymers.
机译:研究了由亲水和疏水部分组成的聚(环氧乙烷-嵌段-环氧丙烷)共聚物的超声降解,目的是确定参与共聚物初始断裂的键的位置。 LC-APCI-IT-MS和LC-APCI-orbitrap-MS用于降解产物的详细结构分析。结果表明,最初的键断裂主要发生在聚环氧乙烷(PEO)和聚环氧丙烷(PPO)链的骨架之间的边界区域。进一步的结构分析表明降解产物中存在氧加合物。与在氦气氛中进行的热降解进行比较,可以得出结论,氧加合物是通过与水进行自由基反应或溶解氧分子而形成的。研究表明,化学反应以及物理键应力的剪切都与共聚物的超声降解有关。

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