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首页> 外文期刊>Journal of the American Society for Mass Spectrometry >Microstructural study of a nitroxide-mediated poly(ethylene oxide)/polystyrene block copolymer (PEO-b-PS) by electrospray tandem mass spectrometry
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Microstructural study of a nitroxide-mediated poly(ethylene oxide)/polystyrene block copolymer (PEO-b-PS) by electrospray tandem mass spectrometry

机译:电喷雾串联质谱法研究氮氧化物介导的聚环氧乙烷/聚苯乙烯嵌段共聚物(PEO-b-PS)的微观结构

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Electrospray ionization tandem mass spectrometry has been used to characterize the microstructure of a nitroxide-mediated poly(ethylene oxide)/polystyrene block copolymer, called SG1-capped PEO-b-PS. The main dissociation route of co-oligomers adducted with lithium or silver cation was observed to proceed via the homolytic cleavage of a C-ON bond, aimed at undergoing reversible homolysis during nitroxide mediated polymerization. This cleavage results in the elimination of the terminal SG1 end-group as a radical, inducing a complete depolymerization process of the PS block from the so-formed radical cation. These successive eliminations of styrene molecules allowed a straightforward determination of the PS block size. An alternative fragmentation pathway of the radical cation was shown to provide structural information on the junction group between the two blocks. Proposed dissociation mechanisms were supported by accurate mass measurements. Structural information on the SG1 end-group could be reached from weak abundance fragment ions detected in the low m/z range of the MS/MS spectrum. Amongst fragments typically expected from PS dissociation, only beta ions were produced. Moreover, specific dissociation of the PEO block was not observed to occur in MS/MS, suggesting that these rearrangement reactions do not compete effectively with dissociations of the odd-electron fragment ions. Information about the PEO block length and the initiated end-group were obtained in MS3 experiments.
机译:电喷雾电离串联质谱已用于表征被称为SG1封端的PEO-b-PS的氮氧化物介导的聚(环氧乙烷)/聚苯乙烯嵌段共聚物的微观结构。观察到与锂或银阳离子加成的共聚低聚物的主要离解途径是通过C-ON键的均相裂解而进行的,目的是在氮氧自由基介导的聚合反应中进行可逆均相。该裂解导致末端SG1端基作为自由基的消除,从而导致PS嵌段从如此形成的自由基阳离子完全解聚。这些连续消除苯乙烯分子的方法可以直接确定PS嵌段的大小。显示了自由基阳离子的另一种断裂途径,可提供有关两个嵌段之间的连接基团的结构信息。拟议的解离机制得到精确质量测量的支持。可以从MS / MS光谱的低m / z范围内检测到的弱丰度碎片离子获得SG1端基的结构信息。在通常从PS解离中预期的片段中,仅产生β离子。此外,在MS / MS中未观察到PEO嵌段的特异性解离,这表明这些重排反应无法与奇数电子碎片离子的解离有效竞争。在MS3实验中获得了有关PEO嵌段长度和起始端基的信息。

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