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Based on the composite film, a third-generation reagentless biosensor could be constructed for the determination of H2O2.
Ag/ZnO core/shell heterostructured nanomaterials were for the first time synthesized by Ag nanoparticle-mediated method, using which a novel hydrogen peroxide biosensor could be constructed.
According to the reaction above, there is a linear relationship between the amount of glucose increase and the dissolved O2 decrease, that is, a model of the glucose amperometric biosensor could be constructed by detecting the decrease of the reduction peak current of dissolved O2 to indicate the concentration of glucose.
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The new center could be constructed better.
An especially designed flow amperometric cell was constructed so that the biosensor could be integrated into a FIA system and glucose in beverage samples could be determined.
Thus, the present biosensor could be used for the point of care detection of H2O2.
This electrochemical biosensor could be widely used for selective detection of Hg2+.
The performance of the developed glucose biosensor was evaluated and the results indicated that a sensitive glucose biosensor could be fabricated.
The proposed biosensor could be also easily regenerated for target detection.
Thus, the proposed biosensor could be a promising candidate for monitoring ultratrace Tb3+ in environment.
Such biosensor could be generalized to detect other protein biomarkers of interest.
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