Self-sacrificing-induced defect enhances the oxidase-like activity of MnOOH for total antioxidant capacity evaluation

Author:

Hu Peng,Zuo Zihao,Ma Xiang wen,Zhu Chengzhou,Hu LiuyongORCID,Gu Wenling

Funder

Henan Provincial Science and Technology Research Project

Publisher

Elsevier BV

Reference43 articles.

1. Smartphone-assisted bioenzyme-nanozyme-chromogen all-in-one test strip with enhanced cascade signal amplification for convenient paraoxon sensing;Zhu;Biosens. Bioelectron.,2022

2. One-pot construction of acid phosphatase and hemin loaded multifunctional metal–organic framework nanosheets for ratiometric fluorescent arsenate sensing;Xu;J. Hazard Mater.,2021

3. Nanozymes: powerful catalytic materials for environmental pollutant detection and degradation;Diao;Environ. Sci.: Nano,2024

4. When nanozymes meet deoxyribonucleic acid: understanding their interactions and biomedical diagnosis applications;Liang;Interdisciplin. Med.,2024

5. Bioinspired FeN5 sites with enhanced peroxidase-like activity enable colorimetric sensing of uranyl ions in seawater;Li;Anal. Chem.,2024

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