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利用19F核磁共振和质谱法阐明新型含氟羧酸以及含氟聚合物热解过程中产生的大气氟代酸前体。

The use of 19F NMR and mass spectrometry for the elucidation of novel fluorinated acids and atmospheric fluoroacid precursors evolved in the thermolysis of fluoropolymers.

作者信息

Ellis David A, Martin Jonathan W, Muir Derek C G, Mabury Scott A

机构信息

Department of Chemistry, 80 St. George St, University of Toronto, Toronto, ON, Canada.

出版信息

Analyst. 2003 Jun;128(6):756-64. doi: 10.1039/b212658c.

Abstract

Fluoropolymers are widely used in industry and consumer products. At the thermal limit of their stability (e.g. > 260 degrees C for PTFE) numerous studies have reported a variety of thermolysis products produced upon polymer breakdown. In the current investigations our objective was to expand the knowledge of these products by advancing the techniques used to obtain their identity. The use of 19F NMR to compliment derivatization with GC-MS has been shown to facilitate the identification of novel fluorinated species, in particular fluorinated acids, that had, until recently, gone previously unreported for the thermal decomposition of fluorinated polymers using traditional techniques. The polymers chosen for the decomposition studies were poly(tetrafluoroethylene), poly(chlorotrifluoroethylene), poly(ethylene-chlorotrifluoroethylene) and poly(tetrafluoroethylene-co-tetrafluoroethylene perfluoropropyl ether) which cover the three major classes of industrially produced fluoro-polymer, co-polymer and elastomer. The use of 1D 19F and 2D 19F-19F correlation spectroscopy (COSY) NMR allowed for the observation of polyfluorinated acids and their atmospheric precursors. This in turn allowed the modification of GC-MS procedures to verify these NMR findings. NMR results also showed a plethora of unidentified and previously unreported materials, thermolysis products that await characterization.

摘要

含氟聚合物广泛应用于工业和消费品中。在其热稳定性极限(例如聚四氟乙烯>260摄氏度)下,大量研究报告了聚合物分解时产生的各种热解产物。在当前的研究中,我们的目标是通过改进用于确定这些产物身份的技术来扩展对这些产物的认识。使用19F核磁共振(NMR)来辅助气相色谱-质谱联用(GC-MS)衍生化已被证明有助于鉴定新型含氟物种,特别是含氟酸,而这些含氟酸直到最近,使用传统技术对含氟聚合物进行热分解时都未曾报道过。选择用于分解研究的聚合物是聚四氟乙烯、聚氯三氟乙烯、乙烯-氯三氟乙烯共聚物和四氟乙烯-全氟丙基乙烯基醚共聚物,它们涵盖了工业生产的氟聚合物、共聚物和弹性体的三大主要类别。使用一维19F和二维19F-19F相关光谱(COSY)核磁共振可以观察到多氟酸及其大气前体。这反过来又使得能够修改GC-MS程序以验证这些核磁共振结果。核磁共振结果还显示了大量未鉴定和以前未报道的物质,即有待表征的热解产物。

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