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首页> 外文期刊>Journal of mass spectrometry: JMS >ESI-TOF mass spectrometry of cationic carbosilane dendrimers: A potent tool for characterization of structural defects
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ESI-TOF mass spectrometry of cationic carbosilane dendrimers: A potent tool for characterization of structural defects

机译:阳离子碳硅烷树枝状大分子的ESI-TOF质谱:用于表征结构缺陷的有效工具

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摘要

Macromolecular polyelectrolytes are gaining considerable attention for the application in medicine that implies their detailed characterization. We have successfully applied electrospray ionization mass spectrometry (ESI MS) to the analysis of defects in the structure of three generations of polycationic carbosilane dendrimers bearing series of quarternary phosphonium groups at their periphery. Besides expected defects caused by incomplete conversion of particular reaction steps during the synthesis of dendritic scaffold and subsequent peripheral functionalization, also, several products of side reactions were observed together with defects created in the course of measurement (particularly ion exchange products). Defective molecules can be to some extent separated by means of gel permeation chromatography that proves that they are not products of in source fragmentation processes. Within the reaction sequence used for the synthesis of dendrimers under study, hydrosilylation was the source of most defects; the effectivity of quarternization depends on the type of phosphine. Results confirm high sensitivity of ESI MS towards defects, stability of the carbosilane skeleton towards fragmentation under the conditions of ESI ionization, and capability to detect both lower- and higher-molecular weight impurities arising from the synthetic sequence in the same m/z range as the target dendrimer, thus providing valuable view of the polydispersity.
机译:大分子聚电解质对暗示其详细表征的医学中的应用程度越来越大。我们已经成功地将电喷雾电离质谱(ESI MS)施加到其周边轴承系列季少年鏻组的三代聚阳离子碳硅烷树枝状大体结构中的缺陷分析。除了在树枝状支架合成期间特定反应步骤的不完全转化引起的预期缺陷以及随后的外周官能化而引起的,还观察到几种副反应的产物与在测量过程中产生的缺陷(特别是离子交换产物)。缺陷分子可以在一定程度上通过凝胶渗透色谱分离,证明它们不是在源片段化过程中的产品。在用于合成研究中的树枝状体的反应序列中,氢化硅烷化是大多数缺陷的来源;祛痰的有效性取决于膦的类型。结果证实了ESI MS朝向缺陷,碳硅烷骨架的稳定性在ESI电离条件下对碎片的高灵敏度,以及检测由合成序列中产生的低聚和高分子量杂质的缺陷在相同的M / Z范围内目标树枝状器,从而提供了多分散性的有价值的观点。

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