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表面修饰碳涂覆钴纳米磁体上固定化的β-环糊精:从水中可逆吸附和富集有机污染物。

Immobilized β-cyclodextrin on surface-modified carbon-coated cobalt nanomagnets: reversible organic contaminant adsorption and enrichment from water.

机构信息

Institute for Chemical and Bioengineering, ETH Zurich, Zurich CH-8093, Switzerland.

出版信息

Langmuir. 2011 Mar 1;27(5):1924-9. doi: 10.1021/la103873v. Epub 2011 Jan 18.

Abstract

Surface-modified magnetic nanoparticles can be used in extraction processes as they readily disperse in common solvents and combine high saturation magnetization with excellent accessibility. Reversible and recyclable adsorption and desorption through solvent changes and magnetic separation provide technically attractive alternatives to classical solvent extraction. Thin polymer layered carbon-coated cobalt nanoparticles were tagged with β-cyclodextrin. The resulting material reversibly adsorbed organic contaminants in water within minutes. Isolation of the immobilized inclusion complex was easily carried out within seconds by magnetic separation due to the strong magnetization of the nanomagnets (metal core instead of hitherto used iron oxide). The trapped molecules were fully and rapidly recovered by filling the cyclodextrin cavity with a microbiologically well accepted substitute, e.g., benzyl alcohol. Phenolphthalein was used as a model compound for organic contaminants such as polychlorinated dibenzodioxins (PCDDs) or bisphenol A (BPA). Fast regeneration of nanomagnets (compared to similar cyclodextrin-based systems) under mild conditions resulted in 16 repetitive cycles (adsorption/desorption) at full efficiency. The high removal and regeneration efficiency was examined by UV-vis measurements at chemical equilibrium conditions and under rapid cycling (5 min). Experiments at ultralow concentrations (160 ppb) underline the high potential of cyclodextrin modified nanomagnets as a fast, recyclable extraction method for organic contaminants in large water streams or as an enrichment tool for analytics.

摘要

表面修饰的磁性纳米粒子可用于萃取过程,因为它们在常见溶剂中容易分散,并具有高饱和磁化强度和优异的可接近性。通过溶剂变化和磁分离实现的可逆和可重复的吸附和解吸为经典溶剂萃取提供了极具吸引力的技术替代方案。薄聚合物层状碳包覆的钴纳米粒子被β-环糊精标记。这种材料可以在几分钟内可逆地吸附水中的有机污染物。由于纳米磁铁(金属核,而不是迄今为止使用的氧化铁)具有很强的磁化性,因此可以在几秒钟内通过磁分离轻松分离固定化的包络复合物。通过用微生物可接受的替代物(例如苄醇)填充环糊精腔,可以完全和快速地回收捕获的分子。使用酚酞作为有机污染物(如多氯二苯并对二恶英(PCDDs)或双酚 A(BPA))的模型化合物。在温和条件下,纳米磁铁的快速再生(与类似的基于环糊精的系统相比)导致在完全效率下进行了 16 次重复循环(吸附/解吸)。通过在化学平衡条件下和快速循环(5 分钟)下进行的 UV-vis 测量来检查高去除和再生效率。在超低浓度(160 ppb)下进行的实验强调了环糊精修饰的纳米磁铁作为快速、可重复的萃取方法在处理大水流中的有机污染物或作为分析富集工具的高潜力。

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