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Thermal Analysis Goes With Mass Spectrometry to Evaluate the Molecular Weight of a Fluorinated Plasma Polymer

机译:质谱分析法进行热分析,以评估氟化等离子体聚合物的分子量

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摘要

A combination of thermal analysis (differential scanning calorimetry DSC) and mass spectrometry (MS) has been proposed to estimate the molecular weight (MW) of fluorinated plasma polymers, not reachable by MS only owing to their high dispersity. A noticeable crystalline index has been previously reported for these plasma polymers leading to a detectable melting peak in DSC, itself not sensitive to dispersity. Relying on the variation of the melting temperature as a function of MW, a set of standards of various MW have been synthesized by atom transfer radical polymerization (ATRP). MW (from MS) plotted as a function of melting temperatures (from DSC) provided a calibration curve further used to estimate the MW of plasma polymers based on their own melting temperature. The comparison of the DSC thermograms of plasma polymer and another reference made by free radical polymerization (FRP) finally offered an original insight into the contributions from insoluble and soluble parts, mimicked by a FRP (branched, low MW) and a ATRP (linear, high MW) polymer respectively.
机译:已经提出将热分析(差示扫描量热法DSC)和质谱(MS)相结合来估计氟化等离子聚合物的分子量(MW),仅由于它们的高分散性而不能通过MS达到。先前已经报道了这些等离子体聚合物的明显的结晶指数,导致在DSC中可检测到的熔融峰,其本身对分散性不敏感。依赖于熔融温度随MW的变化,通过原子转移自由基聚合(ATRP)合成了一系列各种MW的标准品。绘制的分子量(来自MS)作为熔融温度的函数(源自DSC)提供了校准曲线,该校准曲线可进一步用于根据等离子聚合物自身的熔融温度估算其MW。等离子体聚合物DSC温谱图与自由基聚合(FRP)所提供的另一参考文献的比较最终提供了对不溶和可溶部分的贡献的原始见解,这些部分被FRP(分支的,低MW)和ATRP(线性,高分子量)聚合物。

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  • 来源
    《Plasma processes and polymers》 |2015年第9期|980-990|共11页
  • 作者单位

    Luxembourg Inst Sci & Technol LIST Mat Res & Tech, L-4362 Esch, Luxembourg;

    Luxembourg Inst Sci & Technol LIST Mat Res & Tech, L-4362 Esch, Luxembourg;

    Luxembourg Inst Sci & Technol LIST Mat Res & Tech, L-4362 Esch, Luxembourg;

    Luxembourg Inst Sci & Technol LIST Mat Res & Tech, L-4362 Esch, Luxembourg;

    Luxembourg Inst Sci & Technol LIST Mat Res & Tech, L-4362 Esch, Luxembourg;

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