Pezhhanfar Sakha, Farajzadeh Mir Ali, Hosseini-Yazdi Seyed Abolfazl, Afshar Mogaddam Mohammad Reza
Department of Analytical Chemistry, Faculty of Chemistry, University of Tabriz Tabriz Iran
Engineering Faculty, Near East University 99138 Nicosia, North Cyprus Mersin 10 Turkey.
RSC Adv. 2023 Oct 17;13(43):30378-30390. doi: 10.1039/d3ra04612e. eCollection 2023 Oct 11.
The first-ever attempt to apply nickel gallic acid metal-organic framework (NiGA MOF) in analytical method development was done in this research by the extraction of some plasticizers from aqueous media. The greenness of the method is owing to the use of gallic acid and nickel as safe reagents and water as the safest solvent. Low boiling point solvents were applied as desorption solvents that underwent temperature-assisted evaporation in the preconcentration step. Performing the evaporation using a low-temperature water bath for a short period of time streamlines the preconcentration section. Into the solution of interest enriched with sodium sulfate, a mg amount of NiGA MOF was added alongside vortexing to extract the analytes. Following centrifugation and discarding the supernatant, a μL level of diethyl ether was added onto the analyte-loaded NiGA MOF particles and vortexed. The analyte-enriched diethyl ether phase was transferred into a conical bottom glass test tube and located in a water bath set at the temperature of 35 °C under a laboratory hood. After the evaporation, a μL level of 1,2-dibromoethane was added to the test tube and vortexed to dissolve the analytes from the inner perimeter of the tube. One microliter of the organic phase was injected into a gas chromatograph equipped with flame ionization detection. Appreciable extraction recoveries (61-98%), high enrichment factors (305-490), low limits of detection (0.80-1.74 μg L) and quantification (2.64-5.74 μg L), and wide linear ranges (5.74-1000 μg L) were obtained at the optimum conditions.
本研究首次尝试将镍没食子酸金属有机框架(NiGA MOF)应用于分析方法开发,通过从水介质中萃取某些增塑剂来实现。该方法的绿色环保源于使用没食子酸和镍作为安全试剂以及水作为最安全的溶剂。低沸点溶剂用作解吸溶剂,在预浓缩步骤中进行温度辅助蒸发。使用低温水浴在短时间内进行蒸发简化了预浓缩部分。在富含硫酸钠的目标溶液中,加入毫克量的NiGA MOF并同时涡旋,以萃取分析物。离心并弃去上清液后,向负载有分析物的NiGA MOF颗粒上加入微升量的乙醚并涡旋。富含分析物的乙醚相转移至锥形底玻璃试管中,并置于实验室通风橱内温度设定为35℃的水浴中。蒸发后,向试管中加入微升量的1,2 - 二溴乙烷并涡旋,以溶解试管内周边的分析物。将一微升有机相注入配备火焰离子化检测的气相色谱仪中。在最佳条件下获得了可观的萃取回收率(61 - 98%)、高富集因子(305 - 490)、低检测限(0.80 - 1.74 μg/L)和定量限(2.64 - 5.74 μg/L)以及宽线性范围(5.74 - 1000 μg/L)。