Nanozymes are widely used in detecting biomarkers. However, designing nanozymes exhibiting high peroxidase-like activity is challenging. This study aimed to synthesize two types of nanozymes, Pd–Rh–Ir nanozyme (PRI nanozyme) and Pd–Ir nanozyme (PI nanozyme), exhibiting similar morphologies and enhanced activities. The first nanozyme comprised palladium, rhodium, and iridium (PRI nanozyme), while the second nanozyme comprised palladium and iridium (PI nanozyme). The PRI nanozyme exhibited a higher peroxidase-like activity than the PI nanozyme. Rhodium in the subsurface of the PRI nanozyme can lower the hydrogen peroxide decomposition energy and increase the hydroxyl radical (•OH) content in a catalytic system. As a proof of concept, the PRI ...
Single-atom nanozymes (SAzymes) are novel mimic-enzyme materials with atomically doped active sites....
Biological enzymes are macromolecular catalysts that catalyze the biochemical reactions of the natur...
In recent years, peroxidase mimic nanostructures have attracted special interest due to their low co...
Nanoparticles made from platinum-group metals (PGMs) have demonstrated effectiveness as inorganic, a...
A method for the aqueous synthesis of stable and biocompatible citrate-coated palladium nanoparticle...
Over time, noble-metal nanostructures have sparked interest as peroxidase mimics for in-vitro diagno...
Nanomaterials with enzyme-like characteristics (nanozymes) are an emerging alternative of traditiona...
Nanozymes are a class of artificial enzymes that have dimensions in the nanometer range and can be c...
Inspired by the ultrahigh reactivity of the Fe–N4 active site in natural enzyme horseradish peroxida...
Abstract Nanomaterial-based artificial enzymes (or nanozymes) have attracted great attention in the ...
To develop nanomaterials as artificial enzymes, it is necessary to better understand how their physi...
Thanks to the synergistic effect, the bimetallic catalysts show better catalytic activity than the s...
Nanozymes own striking merits, including high enzyme-mimicking activity, good stability, and low cos...
Polyvinylpyrrolidone-stabilized iridium nanoparticles (PVP-IrNPs), synthesized by the facile alcohol...
The assessment of glutathione (GSH) levels is associated with early diagnostics and pathological ana...
Single-atom nanozymes (SAzymes) are novel mimic-enzyme materials with atomically doped active sites....
Biological enzymes are macromolecular catalysts that catalyze the biochemical reactions of the natur...
In recent years, peroxidase mimic nanostructures have attracted special interest due to their low co...
Nanoparticles made from platinum-group metals (PGMs) have demonstrated effectiveness as inorganic, a...
A method for the aqueous synthesis of stable and biocompatible citrate-coated palladium nanoparticle...
Over time, noble-metal nanostructures have sparked interest as peroxidase mimics for in-vitro diagno...
Nanomaterials with enzyme-like characteristics (nanozymes) are an emerging alternative of traditiona...
Nanozymes are a class of artificial enzymes that have dimensions in the nanometer range and can be c...
Inspired by the ultrahigh reactivity of the Fe–N4 active site in natural enzyme horseradish peroxida...
Abstract Nanomaterial-based artificial enzymes (or nanozymes) have attracted great attention in the ...
To develop nanomaterials as artificial enzymes, it is necessary to better understand how their physi...
Thanks to the synergistic effect, the bimetallic catalysts show better catalytic activity than the s...
Nanozymes own striking merits, including high enzyme-mimicking activity, good stability, and low cos...
Polyvinylpyrrolidone-stabilized iridium nanoparticles (PVP-IrNPs), synthesized by the facile alcohol...
The assessment of glutathione (GSH) levels is associated with early diagnostics and pathological ana...
Single-atom nanozymes (SAzymes) are novel mimic-enzyme materials with atomically doped active sites....
Biological enzymes are macromolecular catalysts that catalyze the biochemical reactions of the natur...
In recent years, peroxidase mimic nanostructures have attracted special interest due to their low co...