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共价有机骨架-氧化石墨烯复合材料:双酚 A 固相微萃取的优异吸附材料。

Covalent organic framework-graphene oxide composite: A superior adsorption material for solid phase microextraction of bisphenol A.

机构信息

Research Center for Analytical Sciences, Department of Chemistry, College of Sciences, Northeastern University, Shenyang, 110819, China.

School of Environmental & Municipal Engineering, Qingdao University of Technology, Qingdao, 266033, China.

出版信息

Talanta. 2021 Jan 15;222:121501. doi: 10.1016/j.talanta.2020.121501. Epub 2020 Aug 12.

DOI:10.1016/j.talanta.2020.121501
PMID:33167214
Abstract

Novel materials with high adsorption and desorption efficiencies are significant for studying compounds at ultra-trace level. Herein, covalent organic framework-graphene oxide (COF-GO) composite materials are synthesized, and tested for solid phase microextraction (SPME) of bisphenol A (BPA) at ultra-trace level. With GO modified successively by 3-aminopropyltriethoxysilane, 1,3,5-triformylphloroglucinol (Tp), and different ratios of COF monomers (Tp and benzidine (BD)), the composites of TpBD-GO-n (n = 1-4) are synthesized. By coating the composites on a glass fiber, the extraction performances of the composites for BPA are tested with constant flow desorption ionization mass spectrometry (CFDI-MS). The extraction efficiency of the composite TpBD-GO-2 is 2.2 and 4.7 times higher than those of TpBD and GO, respectively. The chromatographic separation becomes a non-essential step for detection of BPA, the analysis time for each sample is reduced to 8 min. The limits of detection and quantification of MS for BPA analysis are improved to be 22.2 and 73.9 ng L. The linear range is extended to be 10.0 μg L (R = 0.9990), and the relative standard deviations of one fiber (n = 11) and fiber-to-fiber (n = 8) are 4.3% and 5.6% (1 μg L), respectively. With this method, ultra-trace levels of BPA present in river water and sea water samples can be successfully detected and quantified. The results indicate that the TpBD-GO-n composites possess superior extraction performance, and their various applications could be expected.

摘要

新型高吸附和解吸效率的材料对于研究痕量水平的化合物具有重要意义。本文合成了共价有机骨架-氧化石墨烯(COF-GO)复合材料,并将其用于固相微萃取(SPME)超痕量双酚 A(BPA)。GO 经 3-氨丙基三乙氧基硅烷、1,3,5-均苯三甲醛(Tp)和不同比例 COF 单体(Tp 和联苯二胺(BD))依次修饰后,合成了 TpBD-GO-n(n=1-4)复合材料。将复合材料涂覆在玻璃纤维上,采用恒流解吸电离质谱(CFDI-MS)测试复合材料对 BPA 的萃取性能。复合 TpBD-GO-2 的萃取效率分别比 TpBD 和 GO 高 2.2 倍和 4.7 倍。色谱分离对于 BPA 的检测不再是必需步骤,每个样品的分析时间缩短至 8 分钟。BPA 分析的 MS 检测限和定量限分别提高到 22.2 和 73.9 ng L。线性范围扩展至 10.0 μg L(R=0.9990),单根纤维(n=11)和纤维间(n=8)的相对标准偏差分别为 4.3%和 5.6%(1 μg L)。采用该方法,成功检测和定量了河水和海水中的痕量 BPA。结果表明,TpBD-GO-n 复合材料具有优异的萃取性能,有望得到广泛应用。

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