Rezabeyk Soheyla, Manoochehri Mahboobeh
Department of Chemistry, Central Tehran Branch, Islamic Azad University 1467686831 Tehran Iran
RSC Adv. 2020 Oct 6;10(60):36897-36905. doi: 10.1039/d0ra05408a. eCollection 2020 Oct 1.
Herein, a magnetic MOF for preconcentration of Be(ii) was synthesized. The material is obtained from magnetite (FeO) nanoparticles that were modified with 2-amino-5,8-dihydroxy-1,4-naphthoquinone (ADHNQ) and then reacted with terephthalic acid and iron(iii) chloride to form a metal-organic framework of the type MIL-53(Fe) capable of extracting Be(ii). The extraction parameters were optimized by employing design of experiments methodology. Beryllium concentration was determined by flame atomic absorption spectrometry (FAAS). The detection limit was as low as 0.07 ng mL and the quantification limit is 0.2 ng mL. Linearity extends from 0.2 to 100 ng mL, and the precision of the method (intra and inter-day assay) is <9.5%. The recoveries of real sample analysis were in the range of 89-101%. The method was successfully applied to the analysis of various real water samples and an alloy sample.
在此,合成了一种用于预富集铍(II)的磁性金属有机框架材料。该材料由用2-氨基-5,8-二羟基-1,4-萘醌(ADHNQ)改性的磁铁矿(FeO)纳米颗粒制得,然后与对苯二甲酸和氯化铁(III)反应形成能够萃取铍(II)的MIL-53(Fe)型金属有机框架。通过采用实验设计方法对萃取参数进行了优化。采用火焰原子吸收光谱法(FAAS)测定铍浓度。检测限低至0.07 ng/mL,定量限为0.2 ng/mL。线性范围为0.2至100 ng/mL,该方法的精密度(日内和日间测定)<9.5%。实际样品分析的回收率在89-101%范围内。该方法成功应用于各种实际水样和合金样品的分析。