4.8 Article

Nanomaterial/Ionophore-Based Electrode for Anodic Stripping Voltammetric Determination of Lead: An Electrochemical Sensing Platform toward Heavy Metals

Journal

ANALYTICAL CHEMISTRY
Volume 81, Issue 12, Pages 5088-5094

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/ac900417e

Keywords

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Funding

  1. Chinese Academy of Sciences [KZCX2-YW-410]
  2. National Natural Science Foundation of China [40776058]
  3. National 863 High Technology Project of the Ministry of Science and Technology of China [2007AA09Z103]
  4. Department of Science and Technology of Shandong Province [2006GG2205033]
  5. Outstanding Youth Natural Science Foundation of Shandong Province [JQ200814]
  6. Taishan Scholar Program of Shandong Province

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A novel nanomaterial/ionophore-modified glassy carbon electrode for anodic stripping analysis of lead (Pb2+) is described. Nanosized hydroxyapatite (NHAP) with width of 20-25 mn and length of 50-100 nm has been prepared and used to improve the sensitivity for detection of Pb2+ because it provides unique three-dimensional network structure and has strong adsorption ability toward Ph2+. An ionophore, usually used in ion-selective electrodes, is utilized here for its excellent selectivity toward Pb2+. Nafion, a cation-exchange polymer, is employed as the conductive matrix in which NHAP and the ionophore can be tightly attached to the electrode surface. Such a designed NHAP/ionophore/Nafion-modified electrode shows remarkably improved sensitivity and selectivity to Pb2+. The electrode has a linear range of 5.0 nM to 0.8 mu M with a 10 min accumulation time at open-circuit potential. The sensitivity and detection limit of the proposed sensor are 13 mu A/mu M and 1.0 nM, respectively. Interference from other heavy metal ions such as Cd2+, Cu2+, and Hg2+ associated with lead analysis can be effectively diminished. The practical application of the proposed sensor has been carried out for determination of trace levels of Pb2+ in real water samples.

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