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Solid-Phase Microextraction Using Fused-Silica Fibers Coated with Sol-Gel-Derived Hydroxy-Crown Ether

机译:固相微萃取使用包覆有溶胶凝胶的羟基冠醚的熔融石英纤维

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摘要

A novel solid-phase microextraction (SPME) fiber containing hydroxydibenzo-14-crown-4 (OH-DB14C4)/hydroxy-terminated silicone oil (OH-TSO) was first prepared by a sol-gel method and investigated for the determination of phenols. The possible mechanism is discussed and confirmed by IR spectra. The coating has stable performance in high temperature (to 350℃) and solvents (organic and inorganic) due to the chemical binding between the coating and the fiber surface. The addition of crown ether enhances the polarity of the coating compared with that of the sol-gel OH-terminated silicone oil fiber and, accordingly, provides higher extraction efficiency for polar phenolic compounds. On the other hand, OH-terminated silicone oil in the coating can not only increase the length of network but also help to spread the stationary phase on the silica surface uniformly. The fluorescence microscopy experiment suggests the benefit the more uniform surface of the sol-gel-derived OH-DB14C4/OH-TSO fiber in comparison with sol-gel-derived OH-DB14C4 fiber. Some parameters of the SPME fiber for the determination of phenols were investigated. Limits of detection of the phenols are below 1.0 ng/mL, and the precisions are from 2.9 to 4.6% (n=6). Linear ranges were found to be 0.1-10 μg/mL. The sensitivity of the method is enhanced at a low-pH level (pH ~1) and with the addition of salt. The method was applied to the analysis of wastewater sample from a paper mill.
机译:首先通过溶胶-凝胶法制备了一种新型的含羟基二苯并-14-冠-4(OH-DB14C4)/羟基封端的硅油(OH-TSO)的固相微萃取(SPME)纤维,并研究了其测定酚的情况。 。讨论了可能的机理,并通过红外光谱对其进行了确认。由于涂层与纤维表面之间的化学键合,该涂层在高温(至350℃)和溶剂(有机和无机)中具有稳定的性能。与溶胶-凝胶OH封端的硅油纤维相比,冠醚的添加增强了涂层的极性,因此,为极性酚类化合物提供了更高的萃取效率。另一方面,涂层中的OH封端的硅油不仅可以增加网络长度,而且还可以将固定相均匀地分散在二氧化硅表面。荧光显微镜实验表明,与溶胶-凝胶衍生的OH-DB14C4纤维相比,溶胶-凝胶衍生的OH-DB14C4 / OH-TSO纤维表面更均匀的好处。研究了用于确定酚类的SPME纤维的一些参数。酚的检出限低于1.0 ng / mL,精密度为2.9至4.6%(n = 6)。发现线性范围为0.1-10μg/ mL。在低pH值(pH〜1)并加入盐时,该方法的灵敏度得到了提高。该方法用于造纸厂废水样品的分析。

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