School of Chemistry and Chemical Engineering, Sun Yat-sen University, Guangzhou, China.
J Sep Sci. 2014 Jan;37(1-2):106-13. doi: 10.1002/jssc.201301049. Epub 2013 Dec 13.
A novel metal-ion-mediated complex-imprinted-polymer-coated solid-phase microextraction (SPME) fiber used to specifically recognize thiabendazole (TBZ) in citrus and soil samples was developed. The complex-imprinted polymer was introduced as a novel SPME coating using a "complex template" constructed with Cu(II) ions and TBZ. The recognition and enrichment properties of the coating in water were significantly improved based on the metal ion coordination interaction rather than relying on hydrogen bonding interactions that are commonly applied for the molecularly imprinting technique. Several parameters controlling the extraction performance of the complex-imprinted-polymer-coated fiber were investigated including extraction solvent, pH value, extraction time, metal ion species, etc. Furthermore, SPME coupled with HPLC was developed for detection of TBZ, and the methods resulted in good linearity in the range of 10.0-150.0 ng/mL with a detection limit of 2.4 ng/mL. The proposed method was applied to the analysis of TBZ in spiked soil, orange, and lemon with recoveries of 80.0-86.9% and RSDs of 2.0-8.1%. This research provides an example to prepare a desirable water-compatible and specifically selective SPME coating to extract target molecules from aqueous samples by introducing metal ions as the mediator.
一种新型的金属离子介导的整体印迹聚合物涂层固相微萃取(SPME)纤维被开发出来,用于特异性识别柑橘和土壤样品中的噻菌灵(TBZ)。该整体印迹聚合物作为一种新型的 SPME 涂层,使用 Cu(II) 离子和 TBZ 构建的“复合模板”引入。基于金属离子配位相互作用,而不是依赖于通常用于分子印迹技术的氢键相互作用,该涂层在水中的识别和富集性能得到了显著提高。研究了控制复合印迹聚合物涂层纤维萃取性能的几个参数,包括萃取溶剂、pH 值、萃取时间、金属离子种类等。此外,还开发了 SPME 与 HPLC 相结合的方法来检测 TBZ,该方法在 10.0-150.0ng/mL 范围内呈现良好的线性关系,检测限为 2.4ng/mL。该方法被应用于加标土壤、橙子和柠檬中 TBZ 的分析,回收率为 80.0-86.9%,相对标准偏差为 2.0-8.1%。本研究为通过引入金属离子作为介导物,从水样中提取目标分子,制备理想的水兼容且具有特异性选择性的 SPME 涂层提供了一个范例。