Tuning the d-band center of spinel Mn3O4 via tetrahedral substitution toward enhanced oxidase-like activity for colorimetric detection of total antioxidant capacity in food.
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چکیده اصلی
Accurate and sensitive detection of total antioxidant capacity (TAC) is of great practical importance for assessing the overall quality and health benefits. Mn3O4-based nanozymes are promising candidates for high-performance colorimetric detection with the tunable electronic structure. In this work, tetrahedral atomic substitutions (e.g., Zn2+, Co2+, Cu2+) were employed to modulate the electronic structure and d-band center of Mn3O4 to enhance its catalytic performance and thus achieving sensitive detection. A systematic comparative study between the three substitutions and the d-band center-involved mechanistic was conducted. The optimal CoMn2O4 shows a significant acceleration of oxidase-like activity with Km of 0.064 mM and Vmax of 6.29 × 10-8 M s-1. An efficient and visual colorimetric assay of ascorbic acid (AA) assay was developed with the limit of detection of 0.455 μM and the linear range of 1.25-45 μM. TAC detection in real food matrices was achieved by utilizing AA as a representative antioxidant model. Density functional theory (DFT) calculations revealed that Co incorporation at tetrahedral sites endows it with decent d-band center and moderate adsorption and desorption abilities for oxygen-related intermediates, thus enhancing the oxidase-like activity. This tetrahedral-site modulation strategy offers a feasible approach to tailor the oxidase-like activity of Mn3O4 through microscopic d-band electronic structure engineering for sensitive colorimetric sensing.
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