Farjaminezhad Manoochehr, Tehrani Mohammad Saber, Aberoomand Azar Parviz, Bohlooli Shahab, Hussain Syed Waqif
Department of Chemistry, Science and Research Branch, Islamic Azad University, Tehran, Iran.
Department of Pharmacology, School of Medicine, Ardabil University of Medical Sciences, University Street, Ardabil, Iran.
J Sep Sci. 2017 Feb;40(3):717-724. doi: 10.1002/jssc.201600888. Epub 2017 Jan 30.
A high-performance metal oxide polymer magnetite/polyethylene glycol nanocomposite was prepared and coated in situ on the surface of the optical fiber by sol-gel technology. The magnetite nanoparticles as nanofillers were synthesized by a coprecipitation method and bonded with polyethylene glycol as a polymer. The chemically bonded coating was evaluated for the headspace solid-phase microextraction of some environmentally important volatile organic compounds from aqueous samples in combination with gas chromatography and mass spectrometry. The prepared fiber was characterized by scanning electron microscopy and Fourier transform infrared spectroscopy. The mass ratio of nanofiller and polymer on the coating extraction efficiency, morphology, and stability were investigated. The parameters affecting the extraction efficiency, including the extraction time and temperature, the ionic strength, desorption temperature, and time were optimized. The sol-gelized fiber showed excellent chemical stability and longer lifespan. It also exhibited high extraction efficiency compared to the two types of commercial fibers. For volatile organic compounds analysis, the new fiber showed low detection limits (0.008-0.063 ng/L) and wide linearity (0.001-450 × 10 ng/L) under the optimized conditions. The repeatability (interday and intraday) and reproducibility were 4.13-10.08 and 5.98-11.61%, and 7.35-14.79%, respectively (n = 5). For real sample analysis, three types of water samples (ground, surface, and tap water) were studied.
通过溶胶 - 凝胶技术制备了一种高性能金属氧化物聚合物磁铁矿/聚乙二醇纳米复合材料,并将其原位包覆在光纤表面。作为纳米填料的磁铁矿纳米颗粒通过共沉淀法合成,并与作为聚合物的聚乙二醇键合。结合气相色谱和质谱,对该化学键合涂层用于从水样中顶空固相微萃取一些对环境重要的挥发性有机化合物进行了评估。通过扫描电子显微镜和傅里叶变换红外光谱对制备的光纤进行了表征。研究了纳米填料与聚合物的质量比对涂层萃取效率、形态和稳定性的影响。优化了影响萃取效率的参数,包括萃取时间和温度、离子强度、解吸温度和时间。溶胶 - 凝胶化的光纤表现出优异的化学稳定性和更长的使用寿命。与两种商用光纤相比,它还表现出高萃取效率。对于挥发性有机化合物分析,在优化条件下,新型光纤显示出低检测限(0.008 - 0.063 ng/L)和宽线性范围(0.001 - 450×10 ng/L)。重复性(日间和日内)和重现性分别为4.13 - 10.08%、5.98 - 11.61%和7.35 - 14.79%(n = 5)。对于实际样品分析,研究了三种水样(地下水、地表水和自来水)。