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Electrospun Fibers for Solid-Phase Microextraction

机译:固相微萃取用电纺纤维

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A method of producing solid-phase microextraction (SPME) fibers based on electrospinning polymers into nanofibrous mats is demonstrated. Using this method the polymer mat is attached to a stainless steel wire without the need of a binder. While applicable to any polymer that can be electrospun, a polymeric negative photoresist, SU-8 2100, is used for this initial study. SPME devices composed of carbon nanofibers are also illustrated by pyrolyzing SU-8 to produce amorphous carbon. Nonpolar compounds, benzene, toluene, ethylbenzene, and o-xylene (BTEX) and polar compounds, phenol, 4-chlorophenol and 4-nitrophenol are extracted under headspace SPME conditions. Extraction efficiencies are compared to commercial polydimethylsiloxane (PDMS), polydimethylsiloxane/divinylbenzene (PDMS/DVB), and polyacrylate (PA) fibers. For both the non-polar and polar compounds, the carbon nanofiber based phases demonstrated enhanced or comparable (o-xylene only) extraction efficiencies. Distribution constants, K, for benzene on the electrospun fibers are of greater or similar magnitude to those of the compared commercial fibers and increase with carbonization temperature. Finally, the measured detection limits for all the organic compounds are similar to those measured with other SPME gas chromatography-flame ionization detector (GC-FID) methods with a large linear dynamic range (3 orders of magnitude) for quantification.
机译:展示了一种基于将聚合物静电纺入纳米纤维毡中的固相微萃取(SPME)纤维的方法。使用这种方法,聚合物垫无需粘合剂即可连接到不锈钢线上。虽然适用于任何可以静电纺丝的聚合物,但聚合负性光刻胶SU-8 2100用于此初始研究。还通过热解SU-8以生产非晶碳来说明由碳纳米纤维组成的SPME装置。在顶空SPME条件下提取非极性化合物,苯,甲苯,乙苯和邻二甲苯(BTEX),以及极性化合物,苯酚,4-氯苯酚和4-硝基苯酚。将萃取效率与市售的聚二甲基硅氧烷(PDMS),聚二甲基硅氧烷/二乙烯基苯(PDMS / DVB)和聚丙烯酸酯(PA)纤维进行了比较。对于非极性和极性化合物,基于碳纳米纤维的相均显示出提高的或可比的(仅邻二甲苯)萃取效率。苯在电纺纤维上的分布常数K与比较的商业纤维相比更大或更相似,并且随着碳化温度的增加而增加。最后,所有有机化合物的检测限与其他SPME气相色谱-火焰电离检测器(GC-FID)方法所测定的检测限相似,具有较大的线性动态范围(3个数量级)进行定量。

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