首页> 外文期刊>Analytical methods >Controlled growth of a porous hydroxyapatite nanoparticle coating on a titanium fiber for rapid and efficient solid-phase microextraction of polar chlorophenols, triclosan and bisphenol A from environmental water
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Controlled growth of a porous hydroxyapatite nanoparticle coating on a titanium fiber for rapid and efficient solid-phase microextraction of polar chlorophenols, triclosan and bisphenol A from environmental water

机译:钛纤维上羟基羟基磷灰石纳米颗粒涂层的可控生长,用于从环境水中快速高效地固相微萃取极性氯酚,三氯生和双酚A

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Microporous titania (TiO2) was in situ grown on a titanium (Ti) wire as a fiber substrate through direct electrochemical anodization in sulfuric acid containing fluoride. Subsequently hydroxyapatite nanoparticles (HANPs) were fabricated on the template support of TiO2 micropores (TiO2MPs) via sol–gel technology. The resulting fiber coating was used for solid-phase microextraction (SPME) of aromatic compounds coupled to high-performance liquid chromatography (HPLC) with UV detection. This fiber exhibited excellent extraction efficiency and selectivity for phenolic compounds compared to commercial polydimethylsiloxane and polyacrylate fibers. Different factors affecting the extraction performance for phenolic compounds were examined and optimized. The proposed method presented linear ranges from 0.05 to 500 μg L?1 with correlation coefficients higher than 0.999 and limits of detection from 0.012 to 0.14 μg L?1. Intra-day and inter-day relative standard deviations (RSDs) varied between 3.85% and 4.94% and between 4.10% and 5.38% for the proposed method with the single fiber, respectively. RSDs for fiber-to-fiber reproducibility from 4.25% to 7.65% were achieved. This newly fabricated fiber can be used over 200 times and fabricated in a precisely controllable manner. The proposed method was successfully applied to the selective enrichment and determination of trace chlorophenols, triclosan and bisphenol A in river water and domestic sewage. Relative recoveries from 89.62% to 110.2% were obtained with RSDs less than 8.02%.
机译:通过在包含氟化物的硫酸中直接进行电化学阳极氧化,在作为纤维基材的钛(Ti)线上原位生长微孔二氧化钛(TiO2)。随后,通过溶胶-凝胶技术在TiO2微孔(TiO2MPs)的模板载体上制备了羟基磷灰石纳米颗粒(HANPs)。所得的纤维涂层用于芳族化合物的固相微萃取(SPME),并与具有UV检测功能的高效液相色谱(HPLC)结合使用。与市售的聚二甲基硅氧烷和聚丙烯酸酯纤维相比,该纤维对酚类化合物具有优异的萃取效率和选择性。研究和优化了影响酚类化合物提取性能的不同因素。该方法的线性范围为0.05至500μgL?1,相关系数高于0.999,检出限为0.012至0.14μgL?1。对于使用单根纤维的建议方法,日内和日间相对标准偏差(RSD)分别在3.85%和4.94%之间以及4.10%和5.38%之间变化。实现了光纤到光纤重现性的RSD,从4.25%到7.65%。这种新制造的光纤可以使用200次以上,并且可以精确控制的方式制造。该方法已成功应用于河流水和生活污水中微量氯酚,三氯生和双酚A的选择性富集和测定。 RSD小于8.02%时,相对回收率从89.62%至110.2%。

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