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Electrochemical performance of myoglobin based on TiO 2 -doped carbon nanofiber decorated electrode and its applications in biosensing.

Yanyan NiuHui XieGuiling LuoWenju WengChengxiang RuanGuangjiu LiWei Sun
Published in: RSC advances (2019)
A new biosensing strategy based on a TiO 2 -doped carbon nanofiber (CNF) composite modified electrode was developed. TiO 2 @CNF was prepared by electrospinning with further carbonization, before being characterized by various methods and used for electrode modification on the surface of carbon ionic liquid electrode (CILE). Myoglobin (Mb) was further immobilized on the modified electrode surface. The results of ultraviolet-visible (UV-vis) and Fourier transform infrared (FT-IR) spectroscopy showed that Mb maintained its native structure without denaturation in the composite film. Direct electron transfer and the electrocatalytic properties of Mb on the electrode surface were further investigated. A pair of quasi-reversible redox peaks appeared on the cyclic voltammogram, indicating that direct electrochemistry of Mb was realized in the nanocomposite film. This could be attributed to the specific properties of TiO 2 @CNF nanocomposite, including a large surface-to-volume ratio, good biocompatibility and high conductivity. Nafion/Mb/TiO 2 @CNF/CILE exhibited an excellent electrochemical catalytic ability in the reduction of trichloroacetic acid, NaNO 2 and H 2 O 2 . All results demonstrated potential applications of TiO 2 @CNF in third-generation electrochemical biosensors.
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