Photo-enhanced nanozyme with self-cascade catalysis enhances peroxidase-like activity for alcohol discrimination

Rina Su, Yu Wu,Weiqing Xu, Rong Tan,Ying Qin, Runshi Xiao,Canglong Wang, Liuyong Hu,Wenling Gu, Hongcheng Sun,Chengzhou Zhu

CHEMICAL ENGINEERING JOURNAL(2024)

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摘要
Nanozymes have been widely reported to serve as promising alternatives to enzymes. However, insufficient activity is one prominent challenge that limits their further exploitation of applications. To address this issue, photoenzymes, that can borrow solar energy to boost catalysis, inspire the exploration of nanozyme catalysis upon illumination. Herein, a cyano-defective carbon nitride (CCN) nanozyme with photo -enhanced peroxidaselike (POD -like) activity was reported, where the photo -activation enables the 4.15 -fold activity enhancement. Based on in situ characterizations, a self -cascade mechanism was proposed, where CCN can catalyze H2O2 into hydroxyl radical (center dot OH) upon illumination and subsequently capture center dot OH to generate absorbed hydroxyl (*OH) for further catalysis in the dark. Taking advantage of the photo -enhanced activity, a sensing array was successfully constructed for alcohol discrimination. These findings not only set the foundation for photo -enhanced nanozymes but also highlight their potential for practical applications.
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关键词
Carbon Nitrides,Nanozymes,Self -Cascade Catalysis,Sensor Array,Alcohol Discrimination
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