Utilising the Nanozymatic Activity of Copper‐Functionalised Mesoporous C3N5 for Sensing Biomolecules

Author:

Patel Vaishwik1,Ramadass Kavitha1,Morrison Brodie1,Britto Jolitta Sheri John1,Lee Jang Mee12,Mahasivam Sanje3,Weerathunge Pabudi3,Bansal Vipul3,Yi Jiabao1,Singh Gurwinder1,Vinu Ajayan1ORCID

Affiliation:

1. Global Innovative Center for Advanced Nanomaterials (GICAN) College of Engineering, Science and Environment School of Engineering The University of Newcastle Callaghan NSW 2308 Australia

2. Centre for Advanced Materials and Industrial Chemistry (CAMIC) Science, Technology, Engineering and Mathematics (STEM) College Royal Melbourne Institute of Technology (RMIT) University Melbourne Victoria 3001 Australia

3. Sir Ian Potter NanoBioSensing Facility NanoBiotechnology Research Laboratory School of Science RMIT University Melbourne Victoria 3000 Australia

Abstract

AbstractDesigning unique nanomaterials for the selective sensing of biomolecules is of significant interest in the field of nanobiotechnology. In this work, we demonstrated the synthesis of ordered Cu nanoparticle‐functionalised mesoporous C3N5 that has unique peroxidase‐like nanozymatic activity for the ultrasensitive and selective detection of glucose and glutathione. A nano hard‐templating technique together with the in‐situ polymerisation and self‐assembly of Cu and high N‐containing CN precursor was adopted to introduce mesoporosity as well as high N and Cu content in mesoporous C3N5. Due to the ordered structure and highly dispersed Cu in the mesoporous C3N5, a large enhancement of the peroxidase mimetic activity in the oxidation of a redox dye in the presence of hydrogen peroxide could be obtained. Additionally, the optimised Cu‐functionalised mesoporous C3N5 exhibited excellent sensitivity to glutathione with a low detection limit of 2.0 ppm. The strong peroxidase activity of the Cu‐functionalised mesoporous C3N5 was also effectively used for the sensing of glucose with a detection limit of 0.4 mM through glucose oxidation with glucose oxidase. This unique Cu‐functionalised mesoporous C3N5 has the potential for detecting various molecules in the environment as well as for next‐generation glucose and glutathione diagnostic devices.

Publisher

Wiley

Subject

General Chemistry,Catalysis,Organic Chemistry

Cited by 2 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. The rise of borophene;Progress in Materials Science;2024-12

2. C3N5 nanosheets decorated with Cu–Pt alloy nanoparticles toward efficient photocatalytic hydrogen evolution;International Journal of Hydrogen Energy;2024-06

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