• Title of article

    Polyvinyl alcohol–ionic liquid composition for promoting the direct electron transfer and electrocatalysis of hemoglobin

  • Author/Authors

    Zhang، نويسنده , , Yafen and Yan، نويسنده , , Rui and Zhao، نويسنده , , Faqiong and Zeng، نويسنده , , Baizhao، نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 2009
  • Pages
    5
  • From page
    288
  • To page
    292
  • Abstract
    The direct electron transfer and electrocatalysis of hemoglobin (Hb) entrapped in polyvinyl alcohol (PVA)–room temperature ionic liquid (i.e., 1-octyl-3-methylimidazolium hexafluorophosphate [OMIM]PF6) composition has been investigated by using cyclic voltammetry and chronocoulometry. It is found that the composition can promote the direct electron transfer of Hb and the heterogeneous electron transfer rate constant (ks) of immobilized Hb is enhanced to 19.9 s−1. The immobilized Hb also shows high electro-catalytic activity towards the redox of oxygen, hydrogen peroxide and nitrite. The Michaelis constants (Km) decrease to 1.2 × 10−4 M (for hydrogen peroxide) and 9.4 × 10−3 M (for nitrite). The surface concentration of electroactive Hb is estimated and it is ca. 1.4 × 10−10 mol cm−2, meaning that several layers of immobilized Hb take part in the electrochemical reaction. When gold nanoparticles (GNP) is introduced into the composition, the resulting PVA–GNP–[OMIM]PF6 composition presents better performance. The electrochemical characteristic of immobilized Hb is improved further. Thus PVA–GNP–[OMIM]PF6 composition is more suitable for the immobilization of Hb. Therefore, it is a good strategy to prepare novel composition for protein immobilization by using several materials with different function.
  • Keywords
    Direct electron transfer , Polyvinyl alcohol , Ionic liquid , Gold nanoparticle , Electrocatalysis , Hemoglobin
  • Journal title
    Colloids and Surfaces B Biointerfaces
  • Serial Year
    2009
  • Journal title
    Colloids and Surfaces B Biointerfaces
  • Record number

    1970166