School of Physics and Physical Engineering, Shandong Provincial Key Laboratory of Laser Polarization and Information Technology, Qufu Normal University, Qufu, 273165, PR China; College of Chemistry, Chemical Engineer and Materials, Jining University, Qufu City, Shandong Province, 273155, PR China.
Huzhou Key Laboratory of Medical and Environmental Application Technologies, School of Life Sciences, Huzhou University, Zhejiang Province, 313000, PR China.
Anal Chim Acta. 2022 Feb 22;1195:339450. doi: 10.1016/j.aca.2022.339450. Epub 2022 Jan 6.
A magnet-renewable electroanalytical strategy has been initially developed for monitoring hydrogen sulfide (HS) in aquaculture freshwater systems using magnetic FeO-loaded silver metal-organic framework (FeO@Ag-MOF). The magnetic composites were synthesized by a hydrothermal route and further attached onto the magnetic electrodes. It was discovered that the FeO@Ag-MOF-based electrochemical sensors could exhibit the extremely sharp and steady signals of solid-state Ag/AgCl electrochemistry at a lower potential. Furthermore, the highly specific and irreversible S-Cl replacement reactions could occur in the presence of HS, so as to induce the conversion of AgCl into non-electroactive AgS with the rational decline of Ag/AgCl signals. Importantly, the FeO@Ag-MOF-modified electrodes could be renewed simply by the removal of the magnet after each of the detection cycles for the next immobilization of FeO@Ag-MOF probes. The developed electroanalytical method could facilitate the detection of HS in the linear range from 4.0 to 1400 nM, with a limit of detection down to 2.0 nM. Besides, it was employed to detect HS in aquaculture freshwater samples of fish, crab, and shrimp, showing the satisfactory results.
一种可磁再生的电化学策略已初步开发用于监测水产养殖淡水中的硫化氢(HS),该策略使用负载 FeO 的银金属有机骨架(FeO@Ag-MOF)作为磁性材料。磁性复合材料是通过水热法合成的,然后进一步附着在磁性电极上。研究发现,基于 FeO@Ag-MOF 的电化学传感器可以在较低的电势下表现出固态 Ag/AgCl 电化学的极其尖锐和稳定的信号。此外,在 HS 的存在下,会发生高特异性和不可逆的 S-Cl 取代反应,从而导致 AgCl 转化为非电活性的 AgS,Ag/AgCl 信号合理下降。重要的是,FeO@Ag-MOF 修饰电极可以在每次检测循环后通过移除磁铁来再生,以便下一次固定 FeO@Ag-MOF 探针。开发的分析方法可以在 4.0 到 1400 nM 的线性范围内促进 HS 的检测,检测限低至 2.0 nM。此外,它还被用于检测鱼类、螃蟹和虾的水产养殖淡水样品中的 HS,结果令人满意。