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Sol-gel capillary microextraction

机译:溶胶-凝胶毛细管微萃取

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Sol-gel capillary microextraction (sol-gel CME) is introduced as a viable solventless extraction technique for the preconcentration of trace analytes. To our knowledge, this is the first report on the use of sol-gel-coated capillaries in analytical microextraction. Sol-gel-coated capillaries were employed for the extraction and preconcentration of a wide variety of polar and nonpolar analytes. Two different types of sol-gel coatings were used for extraction: sol-gel poly(dimethylsiloxane) (PDMS) and sol-gel poly(ethylene glycol) (PEG). An in-house-assembled gravity-fed sample dispensing unit was used to perform the extraction. The analysis of the extracted analytes was performed by gas chromatography (GC). The extracted analytes were transferred to the GC column via thermal desorption. For this, the capillary with the extracted analytes was connected to the inlet end of the GC column using a two-way press-fit fused-silica connector housed inside the GC injection port. Desorption of the analytes from the extraction capillary was performed by rapid temperature programming (at 100 degreesC/min) of the GC injection port. The desorbed analytes were transported down the system by the helium flow and further focused at the inlet end of the GC column maintained at 30 C. Sol-gel PDMS capillaries were used for the extraction of nonpolar and moderately polar compounds (polycyclic aromatic hydrocarbons, aldehydes, ketones), while sol-gel PEG capillaries were used for the extraction of polar compounds (alcohols, phenols, amines). The technique is characterized by excellent reproducibility. For both polar and nonpolar analytes, the run-to-run and capillary-to-capillary RSD values for GC peak areas remained under 6% and 4%, respectively. The technique also demonstrated excellent extraction sensitivity. Parts per quadrillion level detection limits were achieved by coupling Sol-gel CME with GC-FID. The use of thicker sol-gel coatings and longer capillary segments of larger diameter (or capillaries with sol-gel monolithic beds) should lead to further enhancement of the extraction sensitivity. [References: 80]
机译:溶胶-凝胶毛细管微萃取(sol-gel CME)被引入作为一种可行的无溶剂萃取技术,用于痕量分析物的预浓缩。据我们所知,这是有关在分析微萃取中使用溶胶凝胶涂层毛细管的第一份报告。溶胶-凝胶涂层毛细管用于多种极性和非极性分析物的提取和预浓缩。两种不同类型的溶胶-凝胶涂料用于提取:溶胶-凝胶聚(二甲基硅氧烷)(PDMS)和溶胶-凝胶聚(乙二醇)(PEG)。使用内部组装的重力进样样品分配单元进行提取。提取的分析物的分析通过气相色谱仪(GC)进行。提取的分析物通过热脱附转移到GC色谱柱。为此,使用装在GC进样口内部的双向压入式熔融石英连接器将带有提取的分析物的毛细管连接到GC色谱柱的入口端。通过GC进样口的快速温度编程(以100℃/ min的速度)从萃取毛细管中解吸分析物。解吸的分析物通过氦流向下输送到系统中,并进一步聚焦在保持在30℃的GC色谱柱的入口端。Sol-gelPDMS毛细管用于萃取非极性和中等极性化合物(多环芳烃,醛,酮),而溶胶-凝胶PEG毛细管用于萃取极性化合物(醇,酚,胺)。该技术的特点是出色的可重复性。对于极性和非极性分析物,GC峰面积的运行间和毛细管间毛细管RSD值分别保持在6%和4%以下。该技术还显示出极好的提取灵敏度。通过将Sol-gel CME与GC-FID耦合,可以达到每万亿次检测级零件的限度。使用较厚的溶胶-凝胶涂层和较长的较大直径的毛细管段(或带有溶胶-凝胶整体床的毛细管)将导致提取灵敏度的进一步提高。 [参考:80]

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