Artificial Bifunctional Photozyme Of Glucose Oxidase-Peroxidase For Solar-Powered Glucose-Peroxide Detection In A Biofluid With Resorcinol-Formaldehyde Polymers

ACS APPLIED MATERIALS & INTERFACES(2020)

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Abstract
Photozymes or artificial photosynthesis based on alternative natural enzymes is vital for the sustainable development of next-generation healthcare, energy, and materials science. Herein, we report resorcinol-formaldehyde (RF) resins as a solar-driven metal-free bifunctional glucose oxidase-peroxidase stand-alone photozyme for the colorimetric dual detection of hydrogen peroxide and glucose. The pi-bond conjugated benzenoid-ortho/para quinoid RF polymers are efficient for glucose oxidation and hydrogen peroxide reduction with concurrent 3,3',5,5'-tetramethylbenzidine oxidation under natural sunlight. The photoinduced colorimetric process could detect H2O2 up to 3.5 mu M at 652 nm with the linear range of 0.1-2 A limit of detection of 9.2 mu M was exhibited by the system while measuring glucose with a linearity from 0.2 to 8.5 mM. The formation of hydroxyl radicals ((OH)-O-center dot) from glucose oxidation reactions was evidenced by spin trapping electron paramagnetic resonance studies conducted herein. The results indicated that RF resins possessed strong intrinsic glucose oxidase and peroxidase (POx)-like activity under natural sunlight with promising storage and operation. This simple photozyme will definitely have potential uses in biomimetic solar-driven catalysis, bioenergy, and biomedicine.
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Key words
resorcinol-formaldehyde resin, photocatalysis, cascade reactions, colorimetric biosensing, H2O2, glucose
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