Novel molecularly imprinted polymer based on β-cyclodextrin@graphene oxide: Synthesis and application for selective diphenylamine determination

被引:61
作者
Sedghi, Roya [1 ]
Heidari, Bahareh [1 ]
Yassari, Mehrasa [1 ]
机构
[1] Shahid Beheshti Univ, GC, Fac Chem & Petr Sci, Dept Polymer & Mat Chem, Tehran 1983969411, Iran
关键词
Molecularly imprinted polymer; Diphenylamine; beta-cyclodextrin; Graphene oxide; SOLID-PHASE EXTRACTION; MULTIWALLED CARBON NANOTUBES; CROSS-LINKER; RECOGNITION; CHROMATOGRAPHY; DERIVATIVES; ACID; NANOPARTICLES; PHENYLPHENOL; TOXICITY;
D O I
10.1016/j.jcis.2017.05.013
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
A sensitive and selective molecularly imprinted polymer (MIP) for the determination of diphenylamine (DPA) was developed based on host-guest interactions of a cyclodextrin-based polymer which possesses an inherent affinity for the target. The proposed GO@MIP has been prepared using the graphene oxide (GO) sheets as surface of polymerization, DPA as target molecule, beta-cyclodextrin (beta-CD) and acrylamide (AM) as functional monomers, azobisisobutyronitrile (AIBN) as initiator and N, N methylene bisacrylamide (MBAm) as crosslinker which denoted as GO@MIP nanocomposite. The MIP sites were formed by the inclusion complex through interaction of DPA and beta-CD, followed by extraction of target. The resulting GO@MIP nanocomposite possess a fast adsorption kinetics, highly improved imprinting effect, high adsorption capacity, and it can be applied to fast extraction of DPA. The resultant GO@MIP nanocomposite was characterized using the Fourier transform infrared spectroscopy (FTIR), X-ray diffraction (XRD), thermogravimetric analysis (TGA) scanning electron microscope (SEM) and energy-dispersive spectroscopy (EDS) analysis. On the other hand, the non-imprinted polymer (GO@NIP nanocomposite) has been synthesized and was used in the adsorption experiments. The MIP exhibited good affinity with a maximum adsorption capacity of 95.98 mg g(-1) and excellent selectivity toward DPA than other structural analogues such as 2-amino benzophenone and dithizone. (C) 2017 Elsevier Inc. All rights reserved.
引用
收藏
页码:47 / 56
页数:10
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