化学
全氟辛酸
超纯水
检出限
质谱法
自来水
固相微萃取
色谱法
样品制备
海水
环境化学
气相色谱-质谱法
纳米技术
材料科学
海洋学
环境工程
地质学
工程类
作者
Panthipa Suwannakot,Fabio Lisi,Ezaz Ahmed,Kang Liang,Ravichandar Babarao,J. Justin Gooding,William A. Donald
标识
DOI:10.1021/acs.analchem.9b05524
摘要
We report the development of metal–organic framework (MOF)-based probes for the direct and rapid detection and quantification of perfluorooctanoic acid (PFOA) by mass spectrometry. Four water-resistant MOFs—ZIF-8, UiO-66, MIL88-A, and Tb2(BDC)3—were coated on poly(dopamine) precoated stainless steel needles and used to rapidly preconcentrate PFOA from water for direct analysis by nanoelectrospray ionization mass spectrometry. The analytical performance of each MOF for detecting PFOA was correlated with both the calculated binding energy of the MOF for PFOA and the relative change in the surface area of the MOF upon exposure to PFOA. MOF-functionalized probes can be used for the rapid (<5 min) and sensitive quantification of PFOA molecules at low ng L–1 levels in environmental water samples (i.e., tap water, rainwater, and seawater) with no sample preparation. The limit of detection of PFOA in ultrapure water was 11.0 ng L–1. Comparable accuracy to an accredited analytical method was achieved, despite the MOF-functionalized probe approach being ∼40 times quicker and requiring ∼10 times less sample. These features indicate that MOF-coated probes are promising for the direct and rapid monitoring of polyfluorinated substances and other pollutants in the field.
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