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Original Articles

Magnetic three-dimensional graphene solid-phase extraction of chlorophenols from honey samples

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Pages 40-47 | Received 07 Aug 2014, Accepted 29 Oct 2014, Published online: 03 Dec 2014

References

  • Campillo N, Peñalver R, Hernández-Córdoba M. 2006. Evaluation of solid-phase microextraction conditions for the determination of chlorophenols in a honey samples using gas chromatography. J Chromatogr A. 1125:31–37.
  • Campillo N, Viñas P, Cacho JI, Peñalver R, Hernández-Córdoba M. 2010. Evaluation of dispersive liquid-liquid microextraction for the simultaneous determination of chlorophenols and haloanisoles in wines and cork stoppers using gas chromatography-mass spectrometry. J Chromatogr A. 1217:7323–7330.
  • Canale A, Canovai R, Cosci F, Giannotti P, Benelli G. 2014. Survey of Italian honeys for the presence of foreign matter using the filth test. Food Addit Contam: Part A. 31:905–909.
  • Chao Y-Y, Tu Y-M, Jian Z-X, Wang H-W, Huang Y-L. 2013. Direct determination of chlorophenols in water samples through ultrasound-assisted hollow fiber liquid-liquid-liquid microextraction on-line coupled with high-performance liquid chromatography. J Chromatogr A. 1271:41–49.
  • Chen J, Zou J, Zeng J, Song X, Ji J, Wang Y, Ha J, Chen X. 2010. Preparation and evaluation of graphene-coated solid-phase microextraction fiber. Anal Chim Acta. 678:44–49.
  • Chen P, Yang J-J, Li S-S, Wang Z, Xiao T-Y, Qian Y-H, Yu S-H. 2013. Hydrothermal synthesis of macroscopic nitrogen-doped graphene hydrogels for ultrafast supercapacitor. Nano Energy. 2:249–256.
  • Chung L-W, Lee M-R. 2008. Evaluation of liquid-phase microextraction conditions for determination of chlorophenols in environmental samples using gas chromatography-mass spectrometry without derivatization. Talanta. 76:154–160.
  • Cong H-P, Ren X-C, Wang P, Yu S-H. 2012. Macroscopic multifunctional graphene-based hydrogels and aerogels by a metal ion induced self-assembly process. Acs Nano. 6:2693–2703.
  • de Morais P, Stoichev T, Basto MC, Vasconcelos MT. 2012. Extraction and preconcentration techniques for chromatographic determination of chlorophenols in environmental and food samples. Talanta. 89:1–11.
  • Farhadi K, Matin AA, Amanzadeh H, Biparva P, Tajik H, Farshid AA, Pirkharrati H. 2014. A novel dispersive micro solid phase extraction using zein nanoparticles as the sorbent combined with headspace solid phase micro-extraction to determine chlorophenols in water and honey samples by GC-ECD. Talanta. 128:493–499.
  • Farré M, Sanchís J, Barceló D. 2011. Analysis and assessment of the occurrence, the fate and the behavior of nanomaterials in the environment. Trend Anal Chem. 30:517–527.
  • Feng Q-Z, Zhao L-X, Yan W, Lin J-M, Zheng Z-X. 2009. Molecularly imprinted solid-phase extraction combined with high performance liquid chromatography for analysis of phenolic compounds from environmental water samples. J Hazard Mater. 167:282–288.
  • Guo F, Creighton M, Chen Y, Hurt R, Külaots I. 2014. Porous structures in stacked, crumpled and pillared graphene-based 3D materials. Carbon. 66:476–484.
  • He Z, Liu D, Li R, Zhou Z, Wang P. 2012. Magnetic solid-phase extraction of sulfonylurea herbicides in environmental water samples by Fe3O4@dioctadecyl dimethyl ammonium chloride@silica magnetic particles. Anal Chim Acta. 747:29–35.
  • Holopainen S, Luukkonen V, Nousiainen M, Sillanpää M. 2013. Determination of chlorophenols in water by headspace solid phase microextraction ion mobility spectrometry (HS-SPME-IMS). Talanta. 114:176–182.
  • Ito R, Kawaguchi M, Honda H, Koganei Y, Okanouchi N, Sakui N, Saito K, Nakazawa H. 2008. Hollow-fiber-supported liquid phase microextraction with in situ derivatization and gas chromatography-mass spectrometry for determination of chlorophenols in human urine samples. J Chromatogr B Analyt Technol Biomed Life Sci. 872:63–67.
  • Li C, Shi G. 2012. Three-dimensional graphene architectures. Nanoscale. 4:5549–5563.
  • Li J, Zhao X, Shi Y, Cai Y, Mou S, Jiang G. 2008. Mixed hemimicelles solid-phase extraction based on cetyltrimethylammonium bromide-coated nano-magnets Fe3O4 for the determination of chlorophenols in environmental water samples coupled with liquid chromatography/spectrophotometry detection. J Chromatogr A. 1180:24–31.
  • Li X, Xue A, Chen H, Li S. 2013. Low-density solvent-based dispersive liquid-liquid microextraction combined with single-drop microextraction for the fast determination of chlorophenols in environmental water samples by high performance liquid chromatography-ultraviolet detection. J Chromatogr A. 1280:9–15.
  • Liebezeit G, Liebezeit E. 2013. Non-pollen particulates in honey and sugar. Food Addit Contam: Part A. 30:2136–2140.
  • Liu A-L, Zhong G-X, Chen J-Y, Weng S-H, Huang H-N, Chen W, Lin L-Q, Lei Y, Fu F-H, Sun Z-L, et al. 2013. A sandwich-type DNA biosensor based on electrochemical co-reduction synthesis of graphene-three dimensional nanostructure gold nanocomposite films. Anal Chim Acta. 767:50–58.
  • Liu Q, Shi J, Sun J, Wang T, Zeng L, Jiang G. 2011. Graphene and graphene oxide sheets supported on silica as versatile and high-performance adsorbents for solid-phase extraction. Angew Chem Int Ed. 50:5913–5917.
  • Liu Q, Shi J, Zeng L, Wang T, Cai Y, Jiang G. 2011. Evaluation of graphene as an advantageous adsorbent for solid-phase extraction with chlorophenols as model analytes. J Chromatogr A. 1218:197–204.
  • Michałowicz J, Duda W. 2007. Phenols—sources and toxicity. Polish J Environ Studies. 16:347–362.
  • Moradi M, Yamini Y, Esrafili A, Seidi S. 2010. Application of surfactant assisted dispersive liquid-liquid microextraction for sample preparation of chlorophenols in water samples. Talanta. 82:1864–1869.
  • Novoselov KS, Geim AK, Morozov S, Jiang D, Zhang Y, Dubonos S, Grigorieva I, Firsov A. 2004. Electric field effect in atomically thin carbon films. Science. 306:666–669.
  • Panseri S, Catalano A, Giorgi A, Arioli F, Procopio A, Britti D, Chiesa L. 2014. Occurrence of pesticide residues in Italian honey from different areas in relation to its potential contamination sources. Food Contr. 38:150–156.
  • Rodríguez‐Gonzalo E, Domínguez‐Álvarez J, García‐Gómez D, García‐Jiménez MG, Carabias‐Martínez R. 2010. Determination of endocrine disruptors in honey by CZE‐MS using restricted access materials for matrix cleanup. Electrophoresis. 31:2279–2288.
  • Rodríguez López D, Ahumada DA, Díaz AC, Guerrero JA. 2014. Evaluation of pesticide residues in honey from different geographic regions of Colombia. Food Contr. 37:33–40.
  • Šafařı́ková M, Šafařı́k I. 1999. Magnetic solid-phase extraction. J Magn Magn Mater. 194:108–112.
  • Sun M, Cui P, Ji S, Tang R, Wu Q, Wang C, Wang Z. 2014. Octadecyl-modified graphene as an adsorbent for hollow fiber liquid phase microextraction of chlorophenols from honey. Bull Korean Chem Soc. 35:1011–1015.
  • Sun M, Feng J, Qiu H, Fan L, Li L, Luo C. 2013. A solid-phase microextraction fiber with carbon nanoparticles as sorbent material prepared by a simple flame-based preparation process. J Chromatogr A. 1300:173–179.
  • Sun Y, Wu Q, Shi G. 2011. Supercapacitors based on self-assembled graphene organogel. Phys Chem Chem Phys. 13:17249–17254.
  • Tang Z, Shen S, Zhuang J, Wang X. 2010. Noble‐metal‐promoted three‐dimensional macroassembly of single‐layered graphene oxide. Angew Chem Int Ed Engl. 122:4707–4711.
  • Wang W, Guo S, Penchev M, Ruiz I, Bozhilov KN, Yan D, Ozkan M, Ozkan CS. 2013. Three dimensional few layer graphene and carbon nanotube foam architectures for high fidelity supercapacitors. Nano Energy. 2:294–303.
  • Wang W, Li Y, Wu Q, Wang C, Zang X, Wang Z. 2012. Extraction of neonicotinoid insecticides from environmental water samples with magnetic graphene nanoparticles as adsorbent followed by determination with HPLC. Anal Methods. 4:766–772.
  • Wang X, Luo L, Ouyang G, Lin L, Tam NF, Lan C, Luan T. 2009. One-step extraction and derivatization liquid-phase microextraction for the determination of chlorophenols by gas chromatography-mass spectrometry. J Chromatogr A. 1216:6267–6273.
  • Wu Z-S, Yang S, Sun Y, Parvez K, Feng X, Müllen K. 2012. 3D nitrogen-doped graphene aerogel-supported Fe3O4 nanoparticles as efficient electrocatalysts for the oxygen reduction reaction. J Am Chem Soc. 134:9082–9085.
  • Xi F, Zhao D, Wang X, Chen P. 2013. Non-enzymatic detection of hydrogen peroxide using a functionalized three-dimensional graphene electrode. Electrochem Commun. 26:81–84.
  • Zhang H, Lee HK. 2011. Plunger-in-needle solid-phase microextraction with graphene-based sol-gel coating as sorbent for determination of polybrominated diphenyl ethers. J Chromatogr A. 1218:4509–4516.
  • Zhao G, Song S, Wang C, Wu Q, Wang Z. 2011. Determination of triazine herbicides in environmental water samples by high-performance liquid chromatography using graphene-coated magnetic nanoparticles as adsorbent. Anal Chim Acta. 708:155–159.

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