化学
过氧化氢
生物传感器
铂纳米粒子
纳米材料
铂金
催化作用
纳米颗粒
过氧化物酶
抗氧化剂
组合化学
纳米技术
镍
抗氧化能力
酶
生物化学
有机化学
材料科学
作者
Xiaoyu Wang,Gen Wei,Wanling Liu,Yihong Zhang,Chenxin Zhu,Qi Sun,Minxuan Zhang,Hui Wei
标识
DOI:10.1021/acs.analchem.2c05425
摘要
While great progress in nanozyme-enabled analytical chemistry has been made, most current nanozyme-based biosensing platforms are based on peroxidase-like nanozymes. However, peroxidase-like nanozymes with multienzymatic activities can influence the detection sensitivity and accuracy, while the use of unstable hydrogen peroxide (H2O2) in a peroxidase-like catalytic reaction may result in the reproducibility challenge of sensing signals. We envision that constructing biosensing systems by using oxidase-like nanozymes can address these limitations. Herein, we reported that platinum–nickel nanoparticles (Pt–Ni NPs) with Pt-rich shells and Ni-rich cores possessed high oxidase-like catalytic efficiency, exhibiting a 2.18-fold higher maximal reaction velocity (vmax) than initial pure Pt NPs. The oxidase-like Pt–Ni NPs were applied to develop a colorimetric assay for the determination of total antioxidant capacity (TAC). The antioxidant levels of four bioactive small molecules, two antioxidant nanomaterials, and three cells were successfully measured. Our work not only provides new insights for preparing highly active oxidase-like nanozymes but also manifests their applications for TAC analysis.
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