Enzymatic glucose sensor based on electrospun Mn2O3-Ag nanofibers
Shan Huang, Yu Mei Ding, Yu Lei
Abstract
Shan Huang, Yu Mei Ding, Yu Lei
Abstract
The Mn2O3-Ag nanofibers were fabricated by electrospinning PVP sol-gel solution containing Mn(NO3)2and AgNO3, followed by calcination in air at 500 °C for 3 h. The as-prepared Mn2O3-Ag nanofibers were employed as the immobilization matrix for glucose oxidase (GOD) to construct an amperometric sensor for glucose detection in pH 7 phosphate buffer. The Mn2O3-Ag-GOD modified electrode demonstrated fast response to glucose, along with high sensitivity and excellent selectivity. Based on these good results, the Mn2O3-Ag based composites were proved to be a promising biosensing platform for the construction of glucose biosensor.
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The Mn2O3-Ag nanofibers were fabricated by electrospinning PVP sol-gel solution containing Mn(NO3)2and AgNO3, followed by calcination in air at 500 °C for 3 h. The as-prepared Mn2O3-Ag nanofibers were employed as the immobilization matrix for glucose oxidase (GOD) to construct an amperometric sensor for glucose detection in pH 7 phosphate buffer. The Mn2O3-Ag-GOD modified electrode demonstrated fast response to glucose, along with high sensitivity and excellent selectivity. Based on these good results, the Mn2O3-Ag based composites were proved to be a promising biosensing platform for the construction of glucose biosensor.
Key concepts: Intelligent design, Biology, Paleontology