Guangdong Provincial Key Laboratory of Marine Disaster Prediction and Prevention, Shantou University, Shantou, 515063, People's Republic of China; Fisheries Research Institute of Fujian, Xiamen, 361013, People's Republic of China.
Institute of Food Safety and Environment Monitoring, Fuzhou University, Fuzhou, People's Republic of China.
Anal Chim Acta. 2022 Nov 22;1234:340509. doi: 10.1016/j.aca.2022.340509. Epub 2022 Oct 15.
Efficient fabrication of excellent fiber coatings for high-performance solid-phase microextraction (SPME) is interesting. Here, a high-efficiency synthesis strategy on graphene oxide/polyhedral oligomeric silsesquioxane (GO/POSS) composite-coated fiber was exploited via an ultra-fast UV polymerization in one step, and applied to excellent SPME of polycyclic musks (PCMs). Using methacryloxy siloxane-grafted GO and POSS-methacryl substituted (POSS-MA) as functional monomers, a facile and direct UV polymerization of multiple reactions including alkenyl radical reaction and thiol-ene click chemistry was fulfilled on thiol-pretreated fiber in only 5 min without tedious process. Characteristics such as morphology, FT-IR, XPS, BET and TG of fiber coating were studied in detail, as well as the SPME performance. Attributing to the rigid stereo conformation of POSS and large conjugate plane of GO-based nanosheet, the significant surface area, high hydrophobicity and intrinsic π-π interactions were adopted in fiber coating. In comparison of commercial SPME fibers, POSS-based or GO-based SPME fibers, a superior extraction performance towards PCMs was achieved with GO/POSS-coated fiber. High-efficiency extraction of PCMs was gained with prominent enrichment factors and the sensitive detection limits of PCMs were of 0.04-0.12 ng/L. In particular, the extraction efficiency was robust and still maintained a high level above 93% for PCMs even after 150 cycle's applications. Good recoveries of PCMs reached 86.6%-102.1% and 86.7%-101.3% in river water and cosmetic samples, respectively. It lights an attractive approach to efficiently fabricating robust GO/POSS-coated fiber for high-performance SPME of PCMs.
高效制备用于高性能固相微萃取(SPME)的优异纤维涂层很有趣。在这里,通过一步超快 UV 聚合,开发了一种高效合成氧化石墨烯/笼型倍半硅氧烷(GO/POSS)复合涂层纤维的策略,并应用于多环麝香(PCM)的优异 SPME。使用甲氧基硅氧烷接枝 GO 和 POSS-甲基取代(POSS-MA)作为功能单体,在仅 5 分钟内,在巯基预处理纤维上完成了包括烯基自由基反应和硫醇-烯点击化学在内的多种反应的简便直接的 UV 聚合,无需繁琐的过程。详细研究了纤维涂层的形貌、FT-IR、XPS、BET 和 TG 等特性以及 SPME 性能。由于 POSS 的刚性立体构型和基于 GO 的纳米片的大共轭平面,纤维涂层具有显著的表面积、高疏水性和内在的π-π相互作用。与商业 SPME 纤维、基于 POSS 的或基于 GO 的 SPME 纤维相比,GO/POSS 涂层纤维对 PCM 具有优异的萃取性能。PCM 具有较高的富集因子和敏感检测限(0.04-0.12ng/L),达到了高效萃取 PCM 的效果。特别是,萃取效率稳定,即使在 150 次循环应用后,仍保持在 93%以上的高水平。在河水和化妆品样品中,PCM 的回收率分别达到 86.6%-102.1%和 86.7%-101.3%。为高效制备用于高性能 SPME 的稳健 GO/POSS 涂层纤维提供了一种有吸引力的方法。