Laboratorio de Materiales para Análisis Químico (MAT4LL), Departamento de Química, Unidad Departamental de Química Analítica, Universidad de La Laguna (ULL), Tenerife, 38206, Spain; Instituto Universitario de Enfermedades Tropicales y Salud Pública de Canarias, Universidad de La Laguna (ULL), Tenerife, 38206, Spain.
Laboratorio de Materiales para Análisis Químico (MAT4LL), Departamento de Física, Universidad de La Laguna (ULL), La Laguna, Tenerife, 38206, Spain.
Anal Chim Acta. 2020 Oct 9;1133:137-149. doi: 10.1016/j.aca.2020.08.009. Epub 2020 Aug 12.
A new solid-phase microextraction (SPME) fiber coating was prepared by the immobilization of the metal-organic framework (MOF) CIM-80(Al) on nitinol wires by a green in situ growth approach, using an aqueous synthetic approach, and without the need of any additional material to ensure the attachment of the MOF to the nitinol support. The coating was used for the development of headspace (HS) and direct immersion (DI) SPME methods in combination with gas chromatography and mass spectrometry (GC-MS) for the determination of polycyclic aromatic hydrocarbons (PAHs) as model compounds. Both methods were optimized and validated using the MOF-based fiber together with the commercial polydimethylsiloxane (PDMS) fiber. The MOF extraction phase exhibited superior analytical performance for most of the PAHs in HS-SPME mode (and particularly for less volatiles), while the PDMS fiber presented better results in the DI-SPME method. The analytical performance of the MOF sorbent coating in HS- and DI-SPME methods was also evaluated in urine and brewed coffee samples, without requiring any pretreatment step apart from dilution for DI-SPME experiments, thus showing suitability of the novel coatings for the analysis of complex samples. The proposed CIM-80(Al) fiber was efficient and biocompatible (for using a low cytotoxic sorbent and a biocompatible core support), and it also demonstrated stability and robustness, with inter-fiber (and inter-day) relative standard deviation values lower than 19%, and reusability for more than 80 extraction cycles using 280 °C as desorption temperature.
一种新型固相微萃取(SPME)纤维涂层是通过将金属有机骨架(MOF)CIM-80(Al)固定在镍钛诺丝上原位生长的绿色方法制备的,该方法使用水相合成方法,并且不需要任何额外的材料来确保 MOF 与镍钛诺载体的附着。该涂层用于开发顶空(HS)和直接浸入(DI)SPME 方法,结合气相色谱和质谱(GC-MS),用于测定多环芳烃(PAHs)作为模型化合物。使用基于 MOF 的纤维和商业聚二甲基硅氧烷(PDMS)纤维对两种方法进行了优化和验证。在 HS-SPME 模式下,MOF 萃取相对大多数 PAHs 表现出优异的分析性能(特别是对挥发性较低的 PAHs),而 PDMS 纤维在 DI-SPME 方法中表现出更好的结果。在尿液和酿造咖啡样品中,还评估了 MOF 吸附剂涂层在 HS 和 DI-SPME 方法中的分析性能,除了 DI-SPME 实验需要稀释外,无需任何预处理步骤,从而表明新型涂层适用于复杂样品的分析。所提出的 CIM-80(Al)纤维具有高效、生物相容性(使用低细胞毒性的吸附剂和生物相容性的核心支撑物),并且还表现出稳定性和坚固性,纤维间(和日间)相对标准偏差值低于 19%,在 280°C 下解吸温度下可重复使用超过 80 次萃取循环。