Departamento de Química, Unidad Departamental de Química Analítica, Universidad de La Laguna (ULL), La Laguna, Tenerife 38206, Spain.
Laboratorio de Rayos X y Materiales Moleculares (MATMOL), Departamento de Física, Universidad de La Laguna (ULL), La Laguna, Tenerife 38206, Spain.
Molecules. 2019 Feb 15;24(4):690. doi: 10.3390/molecules24040690.
The pillared-layer Zn-triazolate metal-organic framework (CIM-81) was synthesized, characterized, and used for the first time as a sorbent in a dispersive micro-solid phase extraction method. The method involves the determination of a variety of personal care products in wastewaters, including four preservatives, four UV-filters, and one disinfectant, in combination with ultra-high performance liquid chromatography and UV detection. The CIM-81 MOF, constructed with an interesting mixed-ligand synthetic strategy, demonstrated a better extraction performance than other widely used MOFs in D-µSPE such as UiO-66, HKUST-1, and MIL-53(Al). The optimization of the method included a screening design followed by a Doehlert design. Optimum conditions required 10 mg of CIM-81 MOF in 10 mL of the aqueous sample at a pH of 5, 1 min of agitation by vortex and 3 min of centrifugation in the extraction step; and 1.2 mL of methanol and 4 min of vortex in the desorption step, followed by filtration, evaporation and reconstitution with 100 µL of the initial chromatographic mobile phase. The entire D-µSPE-UHPLC-UV method presented limits of detection down to 0.5 ng·mL; intra-day and inter-day precision values for the lowest concentration level (15 ng·mL)-as a relative standard deviation (in %)-lower than 8.7 and 13%, respectively; average relative recovery values of 115%; and enrichment factors ranging from ~3.6 to ~34. The reuse of the CIM-81 material was assessed not only in terms of maintaining the analytical performance but also in terms of its crystalline stability.
柱状层状 Zn-三唑金属有机骨架 (CIM-81) 被合成、表征,并首次作为一种吸附剂用于分散微固相萃取方法中。该方法涉及在结合超高效液相色谱和紫外检测的情况下,测定废水中的各种个人护理产品,包括四种防腐剂、四种紫外线滤光剂和一种消毒剂。CIM-81 MOF 采用有趣的混合配体合成策略构建,在 D-µSPE 中比其他广泛使用的 MOF(如 UiO-66、HKUST-1 和 MIL-53(Al))具有更好的萃取性能。方法的优化包括筛选设计和 Doehlert 设计。最佳条件为:在 pH 值为 5 的 10 mL 水样中加入 10 mg 的 CIM-81 MOF,萃取步骤中涡旋搅拌 1 分钟,离心 3 分钟;在洗脱步骤中加入 1.2 mL 甲醇,涡旋 4 分钟,然后过滤、蒸发,用 100 µL 初始色谱流动相重新配制。整个 D-µSPE-UHPLC-UV 方法的检测限低至 0.5 ng·mL;最低浓度水平(15 ng·mL)的日内和日间精密度值(以相对标准偏差(%)表示)分别低于 8.7%和 13%;平均相对回收率为 115%;富集因子范围为3.6 至34。不仅评估了 CIM-81 材料在保持分析性能方面的可重复使用性,还评估了其晶体稳定性方面的可重复使用性。