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基于石墨烯的氧化锌固相微萃取涂层,具有增强的选择性和灵敏度,用于测定葱属植物中硫挥发物。

Graphene-supported zinc oxide solid-phase microextraction coating with enhanced selectivity and sensitivity for the determination of sulfur volatiles in Allium species.

机构信息

School of Chemistry and Chemical Engineering, Sun Yat-sen University, Guangzhou 510275, China.

出版信息

J Chromatogr A. 2012 Oct 19;1260:1-8. doi: 10.1016/j.chroma.2012.08.045. Epub 2012 Aug 19.

Abstract

A graphene-supported zinc oxide (ZnO) solid-phase microextraction (SPME) fiber was prepared via a sol-gel approach. Graphite oxide (GO), with rich oxygen-containing groups, was selected as the starting material to anchor ZnO on its nucleation center. After being deoxidized by hydrazine, the Zn(OH)2/GO coating was dehydrated at high temperature to give the ZnO/graphene coating. Sol-gel technology could efficiently incorporate ZnO/graphene composites into the sol-gel network and provided strong chemical bonding between sol-gel polymeric SPME coating and silica fiber surface, which enhanced the durability of the fiber and allowed more than 200 replicate extractions. Results indicated that pure ZnO coated fiber did not show adsorption selectivity toward sulfur compounds, which might because the ZnO nanoparticles were enwrapped in the sol-gel network, and the strong coordination action between Zn ion and S ion was therefore blocked. The incorporation of graphene into ZnO based sol-gel network greatly enlarged the BET surface area from 1.2 m2/g to 169.4 m2/g and further increased the adsorption sites. Combining the superior properties of extraordinary surface area of graphene and the strong coordination action of ZnO to sulfur compounds, the ZnO/graphene SPME fiber showed much higher adsorption affinity to 1-octanethiol (enrichment factor, EF, 1087) than other aliphatic compounds without sulfur-containing groups (EFs<200). Also, it showed higher extraction selectivity and sensitivity toward sulfur compounds than commercial polydimethylsiloxane (PDMS) and polydimethylsiloxane/divinylbenzene (PDMS/DVB) SPME fibers. Several most abundant sulfur volatiles in Chinese chive and garlic sprout were analyzed using the ZnO/graphene SPME fiber in combination with gas chromatography-mass spectrometry (GC-MS). Their limits of detection were 0.1-0.7 μg/L. The relative standard deviation (RSD) using one fiber ranged from 3.6% to 9.1%. The fiber-to-fiber reproducibility for three parallel prepared fibers was 4.8-10.8%. The contents were in the range of 1.0-46.4 μg/g with recoveries of 80.1-91.6% for four main sulfides in Chinese chive and 17.1-122.6 μg/g with recoveries of 73.2-80.6% for three main sulfides in garlic sprout.

摘要

一种基于石墨烯的氧化锌(ZnO)固相微萃取(SPME)纤维是通过溶胶-凝胶法制备的。氧化石墨(GO)含有丰富的含氧基团,被选为在其成核中心锚定 ZnO 的起始材料。用联氨还原后,Zn(OH)2/GO 涂层在高温下脱水得到 ZnO/石墨烯涂层。溶胶-凝胶技术可以有效地将 ZnO/石墨烯复合材料纳入溶胶-凝胶网络中,并在溶胶-凝胶聚合物 SPME 涂层和二氧化硅纤维表面之间提供强化学键合,从而增强纤维的耐用性,并允许进行超过 200 次重复萃取。结果表明,纯 ZnO 涂层纤维对硫化合物没有表现出吸附选择性,这可能是因为 ZnO 纳米颗粒被包裹在溶胶-凝胶网络中,因此 Zn 离子和 S 离子之间的强配位作用被阻断。石墨烯掺入 ZnO 基溶胶-凝胶网络中,BET 表面积从 1.2 m2/g 大幅增加到 169.4 m2/g,进一步增加了吸附位点。结合石墨烯的超高表面积和 ZnO 对硫化合物的强配位作用,ZnO/石墨烯 SPME 纤维对 1-辛硫醇(富集因子,EF,1087)的吸附亲和力远高于不含硫基团的其他脂肪族化合物(EFs<200)。此外,它对硫化合物的萃取选择性和灵敏度均高于商业聚二甲基硅氧烷(PDMS)和聚二甲基硅氧烷/二乙烯基苯(PDMS/DVB)SPME 纤维。使用 ZnO/石墨烯 SPME 纤维结合气相色谱-质谱联用仪(GC-MS)分析了中国韭菜和大蒜芽中几种最丰富的挥发性硫化合物。它们的检出限为 0.1-0.7 μg/L。使用一根纤维时,相对标准偏差(RSD)范围为 3.6%-9.1%。三根平行制备的纤维之间的纤维间重现性为 4.8-10.8%。中国韭菜中四种主要硫化物的含量在 1.0-46.4 μg/g 范围内,回收率为 80.1-91.6%,大蒜芽中三种主要硫化物的含量为 17.1-122.6 μg/g,回收率为 73.2-80.6%。

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