Title of article :
Direct electrochemistry and electrocatalysis of glucose oxidase immobilized on glassy carbon electrode modified by Nafion and ordered mesoporous silica-SBA-15
Author/Authors :
Wang، نويسنده , , Kunqi and Yang، نويسنده , , Hua and Zhu، نويسنده , , Lin and Liao، نويسنده , , Jianhui and Lu، نويسنده , , Tianhong and Xing، نويسنده , , Zhe-Wei and Xing، نويسنده , , Shenyang and Lv، نويسنده , , Qiang، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2009
Pages :
5
From page :
194
To page :
198
Abstract :
In this paper, it was found that glucose oxidase (GOD) has been stably immobilized on glassy carbon electrode modified by ordered mesoporous silica-SBA-15 and Nafion. The sorption behavior of GOD immobilized on SBA-15 matrix was characterized by transmission electron microscopy (TEM), ultraviolet–visible (UV–vis), FTIR, respectively, which demonstrated that SBA-15 can facilitate the electron exchange between the electroactive center of GOD and electrode. The direct electrochemistry and electrocatalysis behavior of GOD on modified electrode were characterized by cyclic voltammogram (CV) which indicated that GOD immobilized on Nafion and SBA-15 matrices displays direct, nearly reversible and surface-controlled redox reaction with an enhanced electron transfer rate constant of 3.89 s−1 in 0.1 M phosphate buffer solution (PBS) (pH 7.12). Furthermore, it was also discovered that, in the absence of O2, GOD immobilized on Nafion and SBA-15 matrices can produce a wide linear response to glucose in the positive potential range. Thus, Nafion/GOD-SBA-15/GC electrode is hopeful to be used in the third non-mediatorʹs glucose biosensor. In addition, GOD immobilized on SBA-15 and Nafion matrices possesses an excellent bioelectrocatalytic activity for the reduction of O2. The Nafion/GOD-SBA-15/GC electrode can be utilized as the cathode in biofuel cell.
Keywords :
Direct electrochemistry , SBA-15 , Glucose oxidase , Glucose , Electrocatalysis
Journal title :
Journal of Molecular Catalysis B Enzymatic
Serial Year :
2009
Journal title :
Journal of Molecular Catalysis B Enzymatic
Record number :
1713877
Link To Document :
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