Title : Acetylcholinesterase modified AuNPs-MoS2-rGO\/PI flexible film biosensor: Towards efficient fabrication and application in paraoxon detection - Jia_2019_Bioelectrochemistry_131_107392 |
Author(s) : Jia L , Zhou Y , Wu K , Feng Q , Wang C , He P |
Ref : Bioelectrochemistry , 131 :107392 , 2019 |
Abstract :
A flexible acetylcholinesterase (AChE) film biosensor, based on a AuNPs-MoS2-reduced graphene oxide/polyimide flexible film (rGO/PI) electrode, has been synthesized for paraoxon detection. In this study, the rGO/PI film acts as the flexible substrate and AuNPs are reduced by monolayer MoS2 under illumination. Transmission electron microscopy revealed that AuNPs are uniformly dispersed on the MoS2-rGO/PI electrode surface with a diameter ~10nm. X-ray photoelectron spectroscopy indicated that a strong binding force exists between reduced AuNPs and monolayer MoS2. The AChE modified AuNPs-MoS2-rGO/PI flexible film biosensor is used to hydrolyze acetylcholine chloride and obtain a large current response at 0.49V by differential pulse voltammetry, demonstrating successful immobilization of AChE. In view of the inhibition of paraoxon on the AChE, under optimal conditions, the AChE/AuNPs-MoS2-rGO/PI film biosensor shows a linear response over a concentration range 0.005-0.150mug/mL, a sensitivity of 4.44 uA/mugmL(-1), a detection limit of 0.0014mug/mL, acceptable reproducibility and stability to paraoxon. The flexible film biosensor has also proved used for detection of paraoxon in real samples. |
PubMedSearch : Jia_2019_Bioelectrochemistry_131_107392 |
PubMedID: 31707277 |
Jia L, Zhou Y, Wu K, Feng Q, Wang C, He P (2019)
Acetylcholinesterase modified AuNPs-MoS2-rGO\/PI flexible film biosensor: Towards efficient fabrication and application in paraoxon detection
Bioelectrochemistry
131 :107392
Jia L, Zhou Y, Wu K, Feng Q, Wang C, He P (2019)
Bioelectrochemistry
131 :107392