As a low-cost support, MXenes have attracted more and more attention in developing nanoenzymes with enhanced peroxidase- or oxidase-like activity. In this paper, we report a simple way to synthesize a N-doped Ti3C2Tx MXene, which provides a support platform for developing MXene-based nanozymes with an attractive structure and performance. By anchoring copper nanoparticles on N-doped Ti3C2Tx Cu nanoparticles, Cu nanoparticles (NPs)/N-doped Ti3C2Tx with satisfactory structural stability was prepared, displaying a synergistic effect and enhanced peroxidase-like activity. The superior peroxidase-like activity was confirmed by the oxidation kinetics of 3,3′,5,5′-tetramethylbenzidine (TMB) and density functional theory calculations. The character...
Nanomaterials-based biomimetic catalysts with multiple functions are necessary to address challenges...
Facilely synthesized peroxidase-like nanozymes with high catalytic activity and stability may serve ...
Nanomaterials themselves as redox probes and nanocatalysts have many advantages for electrochemical ...
Copper nanoclusters (Cu NCs) are found to possess intrinsic peroxidase-like activity for the first t...
Enzyme-like catalytic activity and efficiency of carbon-based nanomaterials are closely linked to th...
Nanomaterial-based enzyme mimetics (nanozymes) is an emerging field of research that promises to pro...
Nanozymes, as artificial enzymes with the biological action of natural enzymes, have enormous potent...
The enzyme mimetic activity of nanomaterials has been applied in colorimetric assays and point-of-ca...
The ability to detect glucose concentrations in human urine offers a non-invasive approach to monito...
Copper (Cu), an indispensable trace element within the human body, serving as an intrinsic constitue...
Metallic nanoparticles potentially have wide practical applications in various fields of science and...
A Ti-3(AlxCu1-x)C-2 phase with Cu atoms with a degree of ordering in the A plane is synthesized thro...
Nanomaterials with enzyme-like characteristics (nanozymes) are an emerging alternative of traditiona...
Diabetes is a major health challenge, and it is linked to a number of serious health issues, includi...
A novel nanosensor with peroxidase enzyme-mimetic activity, based on CuS-BSA-Cu-3(PO4)(2) nanopartic...
Nanomaterials-based biomimetic catalysts with multiple functions are necessary to address challenges...
Facilely synthesized peroxidase-like nanozymes with high catalytic activity and stability may serve ...
Nanomaterials themselves as redox probes and nanocatalysts have many advantages for electrochemical ...
Copper nanoclusters (Cu NCs) are found to possess intrinsic peroxidase-like activity for the first t...
Enzyme-like catalytic activity and efficiency of carbon-based nanomaterials are closely linked to th...
Nanomaterial-based enzyme mimetics (nanozymes) is an emerging field of research that promises to pro...
Nanozymes, as artificial enzymes with the biological action of natural enzymes, have enormous potent...
The enzyme mimetic activity of nanomaterials has been applied in colorimetric assays and point-of-ca...
The ability to detect glucose concentrations in human urine offers a non-invasive approach to monito...
Copper (Cu), an indispensable trace element within the human body, serving as an intrinsic constitue...
Metallic nanoparticles potentially have wide practical applications in various fields of science and...
A Ti-3(AlxCu1-x)C-2 phase with Cu atoms with a degree of ordering in the A plane is synthesized thro...
Nanomaterials with enzyme-like characteristics (nanozymes) are an emerging alternative of traditiona...
Diabetes is a major health challenge, and it is linked to a number of serious health issues, includi...
A novel nanosensor with peroxidase enzyme-mimetic activity, based on CuS-BSA-Cu-3(PO4)(2) nanopartic...
Nanomaterials-based biomimetic catalysts with multiple functions are necessary to address challenges...
Facilely synthesized peroxidase-like nanozymes with high catalytic activity and stability may serve ...
Nanomaterials themselves as redox probes and nanocatalysts have many advantages for electrochemical ...