Large-size porous spherical 3D covalent organic framework for preconcentration of bisphenol F in water samples and orange juice

被引:4
作者
He, Qiong [1 ]
Chen, Ying [1 ]
Liu, Yuyang [1 ]
Wang, Qiang [1 ]
He, Chiyang [1 ,3 ]
Liu, Shaorong [2 ]
机构
[1] Wuhan Text Univ, Coll Chem & Chem Engn, Hubei Key Lab Biomass & Ecodyeing & Finishing, Wuhan 430073, Peoples R China
[2] Univ Oklahoma, Dept Chem & Biochem, Norman, OK 73019 USA
[3] Wuhan Text Univ, Coll Chem & Chem Engn, Wuhan 430073, Peoples R China
基金
中国国家自然科学基金;
关键词
Covalent organic framework; Large - size spheres; Size - controllable synthesis; Dispersive solid - phase extraction; Bisphenol F; SOLID-PHASE EXTRACTION; MOLECULARLY IMPRINTED POLYMER; GRAPHENE OXIDE; SORBENT; SEPARATION;
D O I
10.1016/j.talanta.2023.125601
中图分类号
O65 [分析化学];
学科分类号
070302 ; 081704 ;
摘要
Large-size spherical sorbents with particle size of 10-50 mu m are widely applied in separation fields, however it is still a great challenge to synthesize such large-size spherical covalent organic framework (COF). In this work, a type of large-size porous 3D COF was size-controablly synthesized via a two-step strategy, in which a large-size porous 3D spherical polymer was prepared first through a Pickering emulsion polymerization using nano silica as the stabilizer, and subsequently it was converted into porous spherical 3D COF by a solvothermal method. The as-prepared porous spherical COF (COF-320 as a model) showed size-controllable uniform spherical morphology within 15-45 mu m, large specific surface area, fine crystalline structure, and good chemical stability. When used as the sorbent for dispersive solid-phase extraction (d-SPE) of bisphenol F (BPF), the porous spherical COF-320 (15 mu m) displayed high adsorption capacity (Qmax = 335.6 mg/g), high enrichment factor (80 folds), and good reusability (at least five cycles). By coupling the d-SPE method to HPLC, a new analytical approach was developed and successfully applied to the determination of trace BPF in two water samples, an orange juice and a standard sample with recoveries of 96.0-102.2 % (RSD = 1.1-1.5 %), 95.7-97.4 % (RSD = 1.4-4.4 %) and 98.7 % (RSD = 2.3 %), respectively. The limit of detection (S/N = 3) and limit of quantification (S/N = 10) were 0.1 and 0.3 ng/mL, respectively. The new synthesis strategy opens a viable way to prepare large-size porous spherical COFs, and the developed analytical method can be potentially applied to sensitively detect the trace BPF in water samples and beverages.
引用
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页数:10
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