Engineering an enzyme-like catalytic sensor for on-site dual-mode evaluation of total antioxidant capacity.
Xi Mei HanJie DanHao Qian ChenQian WangLin Pin LuoJian Xing FengTian Yu WangJian SunJian Long WangYing GuWentao ZhangPublished in: Mikrochimica acta (2024)
A novel Fe-MoO x nanozyme, engineered with enhanced peroxidase (POD)-like activity through strategic doping and the creation of oxygen vacancies, is introduced to catalyze the oxidation of TMB with high efficiency. Furthermore, Fe-MoO x is responsive to single electron transfer (SET) and hydrogen atom transfer (HAT) mechanisms related to antioxidants and can serve as a desirable nanozyme for total antioxidant capacity (TAC) determination. The TAC colorimetric platform can reach a low LOD of 0.512 μM in solution and 24.316 μM in the smartphone-mediated RGB hydrogel (AA as the standard). As proof of concept, the practical application in real samples was explored. The work paves a promising avenue to design diverse nanozymes for visual on-site inspection of food quality.
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