AI Article Synopsis

  • The study highlights the importance of accessible active sites and high loading of gold nanoparticles (AuNPs) for improving the catalytic activity of AuNP-based catalysts.
  • Sphere-on-sphere silica microspheres with a hierarchical structure were developed to support a dense population of AuNPs, resulting in a novel micro-/nanostructure (SoS-0.55@Au-7.3) that demonstrated strong peroxidase-mimicking activity.
  • The system also showed excellent stability, reusability, and sensitivity in detecting hydrogen peroxide, indicating its potential applications in biosensing and biomedical fields.

Article Abstract

The active site accessibility and high loading of gold nanoparticles (AuNPs) are key factors affecting the catalytic activity of supported AuNP-based catalysts. However, the preparation of supported AuNP-based catalysts with highly accessible active sites still remains a challenge. Herein, sphere-on-sphere (SoS) silica microspheres with a hierarchical structure, good dispersion and high surface density of thiol groups (10 SH nm) are prepared and used as a platform for the growth of high-density AuNPs. The obtained hierarchical Si@Au micro-/nanostructure consisting of 0.55 μm SoS silica microspheres and 7.3 nm AuNPs (SoS-0.55@Au-7.3) is found to show excellent peroxidase-mimicking activity ( = 0.033 mM and = 34.6 × 10 M s) with merits of high stability and good reusability. Furthermore, the as-obtained SoS-0.55@Au-7.3-based system can sensitively detect hydrogen peroxide (HO) with a low detection limit of 1.6 μM and a wide linear range from 2.5 μM to 1.0 mM. The high catalytic activity, excellent stability and good reusability of SoS-0.55@Au-7.3 imply its great prospects in biosensing and biomedical analysis.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC10790278PMC
http://dx.doi.org/10.1039/d3ra07421hDOI Listing

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