化学
对苯二酚
蒙脱石
兴奋剂
过氧化物酶
核化学
无机化学
有机化学
酶
物理
光电子学
作者
Xinwen Guo,Ying Chu,Ruizhe Zhang,Xuebin Ke,Qingyun Liu
摘要
Nanozymes constitute a category of nanomaterials presenting the potential to replace natural enzymes. Nonetheless, weak catalytic activity becomes the biggest barrier hindering their practical applications. In this study, we fabricated a montmorillonite (MMT)‐supported ruthenium (Ru)‐doped CuBi 2 O 4 nanozyme (Ru/CuBi 2 O 4 ‐MMT) with robust peroxidase (POD)‐like activity by hydrothermal method and studied its application in determination of hydroquinone (HQ). Specifically, the CuBi 2 O 4 material is brought into nanozyme field for the first time. MMT‐supported CuBi 2 O 4 material possesses smaller size and larger surface area than pure CuBi 2 O 4 . Ru‐doped exhibits significantly higher POD‐like activity in comparison to CuBi 2 O 4 due to the increase of defect sites. Both of strategies synergistically enhance the POD‐like activity of CuBi 2 O 4 material. The POD‐like activity of nanozyme originates from the photogenerated holes (h + ) and superoxide radicals ( • O 2 − ) produced during the catalytic decomposition of H 2 O 2 . Ru/CuBi 2 O 4 ‐MMT nanozyme can be successfully applied for HQ colorimetric detection by redox reaction. Our newly developed nanozyme exhibits exceptional POD‐like activity by introducing support and element doping strategies, holding great potential for detecting pollutants in practical applications.
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