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Photonic and magnetic dual responsive molecularly imprinted polymers: preparation, recognition characteristics and properties as a novel sorbent for caffeine in complicated samples

机译:光子和磁双响应分子印迹聚合物:制备,识别特征和性质作为复杂样品中咖啡因的新型吸附剂

摘要

We demonstrated the construction and characteristics of photonic and magnetic dual responsive molecularly imprinted polymers (DR-MIPs) prepared by combination of stimuli-responsive polymers and a molecular imprinting technique. The resultant DR-MIPs of Fe3O4@MIPs exhibited specific affinity for caffeine and photoisomerization induced reversible uptake and release of caffeine upon alternate UV and visible light irradiation. With irradiation at 365 nm, 62.5% of the receptor-bound caffeine was released from the DR-MIPs back into solution. Subsequent irradiation with visible light caused 93.6% of the released caffeine to be rebound by the DR-MIPs. The novel DR-MIPs were used as a sorbent for the enrichment of caffeine from real water and beverage samples. Recoveries ranging from 89.5-117.6% were achieved. The magnetic property of DR-MIPs provided fast and simple separation while the photonic responsive property offered simple template elution with the assistance of UV-Vis irradiation. The simple, rapid and reliable DR-MIPs based method proved potentially applicable for trace caffeine analysis in complicated samples.
机译:我们演示了光敏和磁双响应分子印迹聚合物(DR-MIPs)的构造和特性,该聚合物是通过刺激响应聚合物和分子印迹技术的组合制备的。 Fe3O4 @ MIPs的最终DR-MIPs对咖啡因表现出特定的亲和力,并且光异构化在交替的紫外线和可见光照射下可逆地摄取和释放咖啡因。在365 nm照射下,受体结合的咖啡因的62.5%从DR-MIPs释放回溶液中。随后用可见光照射导致93.6%释放的咖啡因被DR-MIP反弹。新型DR-MIP被用作吸附剂,用于从真实的水和饮料样品中富集咖啡因。回收率在89.5-117.6%之间。 DR-MIP的磁性提供了快速简单的分离,而光子响应特性则借助UV-Vis辐照提供了简单的模板洗脱。简单,快速和可靠的基于DR-MIPs的方法被证明可能适用于复杂样品中的痕量咖啡因分析。

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