Preparation and properties of bisphenol A sensor based on multiwalled carbon nanotubes/Li4Ti5O12-modified electrode
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  • 作者:Wei Wang ; Xiao Yang ; Yuan-xiang Gu ; Cai-feng Ding ; Jun Wan
  • 关键词:Multiwalled carbon nanotubes ; Lithium titanate ; Bisphenol A ; Composite material ; Electrochemical sensor
  • 刊名:Ionics
  • 出版年:2015
  • 出版时间:March 2015
  • 年:2015
  • 卷:21
  • 期:3
  • 页码:885-893
  • 全文大小:1,082 KB
  • 参考文献:1. Vom Saal FS, Hughes C (2005) An extensive new literature concerning low-dose effects of bisphenol A shows the need for a new risk assessment. Environ Health Perspect 113:926-33 CrossRef
    2. Suzuki T, Nakagawa Y, Takano I, Yaguchi K, Yasuda K (2004) Environmental fate of bisphenol A and its biological metabolites in river water and their xeno-estrogenic activity. Environ Sci Technol 38:2389-396 CrossRef
    3. Staples CA, Dome PB, Klecha GM, Oblock ST, Harris LR (1998) A review of the environmental fate, effects, and exposures of bisphenol A. Chemosphere 36:2149-173 CrossRef
    4. Li W, Seifert M, Xu Y, Hock B (2004) Comparative study of estrogenic potencies of estradiol, tamoxifen, bisphenol A and resveratrol with two in vitro bioassays. Environ Int 30:329-35 CrossRef
    5. Cai YQ, Jiang GB, Liu JF, Zhou QX (2003) Multiwalled carbon nanotubes as a solid-phase extraction adsorbent for the determination of bisphenol A, 4- / n-nonylphenol, and 4-tert-octylphenol. Anal Chem 75:2517-521 CrossRef
    6. Portaccio M, Di Tuoro D, Arduini F, Lepore M, Mita DG, Diano N, Mita L, Moscone D (2010) A thionine-modified carbon paste amperometric biosensor for catechol and bisphenol A determination. Biosens Bioelectron 25:2003-008 CrossRef
    7. Ballesteros-Gómez A, Rubio S, Pérez-Bendito D (2009) Analytical methods for the determination of bisphenol A in food. J Chromatogr A 1216:449-69 CrossRef
    8. Lu C, Li J, Yang Y, Lin JM (2010) Determination of bisphenol A based on chemiluminescence from gold (III)-peroxymonocarbonate. Talanta 82:1576-580 CrossRef
    9. Yin HS, Zhou YL, Ai SY, Chen QP, Zhu XB, Liu XG, Zhu LS (2010) Sensitivity and selectivity determination of BPA in real water samples using PAMAM dendrimer and CoTe quantum dots modified glassy carbon electrode. J Hazard Mater 174:236-43 CrossRef
    10. Mita DG, Attanasio A, Arduini F, Diano N, Grano V, Bencivenga U, Rossi S, Amine A, Moscone D (2007) Enzymatic determination of BPA by means of tyrosinase immobilized on different carbon carriers. Biosens Bioelectron 23:60-5 CrossRef
    11. Wang X, Zeng HL, Wei YL, Lin JM (2006) A reversible fluorescence sensor based on insoluble β-cyclodextrin polymer for direct determination of bisphenol A (BPA). Sensors Actuators B 114:565-72 CrossRef
    12. Yin HS, Zhou YL, Ai SY (2009) Preparation and characteristic of cobalt phthalocyanine modified carbon paste electrode for bisphenol A detection. J Electroanal Chem 626:80-8 CrossRef
    13. Gan P, Compton RG, Foord JS (2013) The measurement of the Gibbs energy of transfer between oil and water using a nano-carbon paste electrode. Electroanalysis 25:2423-434 CrossRef
    14. Johan MR, Ibrahim S (2011) Neural networks for Nyquist plots prediction in a nanocomposite polymer electrolyte (PEO–LiPF6–EC–CNT). Ionics 17:683-96 CrossRef
    15. Poorahong S, Thammakhet C, Thavarungkul P, Limbut W, Numnuam A, Kanatharana P (2012) Amperometric sensor for detection of bisphenol A using a pencil graphite electrode modified with polyaniline nanorods and multiwalled carbon nanotubes. Microchim Acta 176:91-9 CrossRef
    16. Li Y
  • 刊物类别:Chemistry and Materials Science
  • 刊物主题:Chemistry
    Electrochemistry
    Materials Science
    Physical Chemistry
    Condensed Matter
    Renewable Energy Sources
    Electrical Power Generation and Transmission
  • 出版者:Springer Berlin / Heidelberg
  • ISSN:1862-0760
文摘
A new electrochemical sensor based on the multiwalled carbon nanotube (MWCNT)/Li4Ti5O12-modified glassy carbon electrode for determination of bisphenol A (BPA) was developed by modifying the surface of a glassy carbon electrode with the prepared composite Li4Ti5O12/MWCNTs. The morphology and structure of the composite were characterized by infrared spectroscopy and scanning electron microscope. The obtained electrochemical sensor Li4Ti5O12/MWCNTs/GCE takes advantages of large specific surface area of the Li4Ti5O12 nanostructure, excellent adsorption properties, and electrochemical properties of MWCNTs. Under optimal conditions, the response of the proposed sensor to BPA was linear in the BPA concentration range from 1.0?×-0? to 1.0?×-0??mol?L? and the detection limit was of 7.8?×-0??mol?L? according to the 3σ rule. The results revealed that the newly developed sensor exhibited high sensitivity and selectivity, excellent electrochemical performance, and fast response to BPA, allowing it to be used for the detection of BPA in actual samples.

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