Electrochemical biosensor based on CdS nanostructure surfaces
2012
Qian, Jiqing | Yan, Shancheng | Xiao, Zhongdang
Well-defined hexangularly faced CdS nanorod arrays have been grown directly on a conductive ITO glass via a facile one-step and non-template hydrothermal approach. Gold nanoparticles were decorated onto the nanorods to enhance the electron transfer process of electrode. Glucose oxidase (GOD) was then immobilized on the CdS through crosslinking with chitosan (CS), which resulted in a glucose biosensor with high enzyme loading and excellent sensitivity. Such a chitosan-encapsulated GOD-based biosensor revealed a relatively rapid response time of less than 50s, and an approximate linear detection range of glucose concentration, from 50 to 500μmolL⁻¹ with a detection limit of 38μmolL⁻¹ and an electrode sensitivity of 5.9μAmM⁻¹.
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