The work describes a carbon-based peroxidase mimic, N- and B-codoped reduced graphene oxide (NB-rGO), which shows high peroxidase-like activity without oxidase-like activity and has a catalytic efficiency nearly 1000-fold higher than that of undoped rGO. The high catalytic activity of NB-rGO is explained by density functional theory by calculating Gibbs free energy change during the peroxide decomposition reaction. Acetylcholine and C-reactive protein are successfully quantified with high sensitivity and selectivity, which were comparable to or better than those obtained using natural peroxidase. Furthermore, NB-rGO, which does not have oxidase-like activity, is proven to have higher sensitivity toward acetylcholine than Pt nanoparticles ha...
Development of efficient artificial enzymes is an emerging field in nanobiotechnology, since these a...
The present study evaluates the role of graphene oxide’s (GO’s) peroxidase-like and inherent/carboca...
A low-cost and facile preparation of water-soluble carbon nanomaterials from commercial available gr...
The work describes a carbon-based peroxidase mimic, N- and B-codoped reduced graphene oxide (NB-rGO)...
“Artificial enzymes”, a term coined by Breslow for enzyme mimics is an exciting and promising branch...
Nanozymes, the enzyme-mimicking nanomaterials, have been developed to overcome the low stability and...
Prussian blue nanoparticles (PB NPs) stabilized with surface capping agents as functional mimics of ...
The design and construction of efficient artificial enzymes is highly desirable. Recent studies have...
A catalytic reduction of graphene oxide (GO) by glutathione peroxidase (GPx) mimics is reported. Thi...
Dipeptide-polyoxometalates (POMs)-graphene oxide (GO) ternary hybrid is an excellent peroxidase-like...
We established four kinds of good dispersing systems of graphene and its derivatives with different ...
Accurate detection of trace analytes in biological samples is essential for medical diagnostics but ...
Biological systems can often drive complex chemical transformations under mild conditions (e.g., aqu...
Supramolecular colorless copper(I)–thiourea hydrogel (Cu-TU gel) has been made a mechanically stron...
Graphene oxide (GO) is being investigated extensively for enzyme and protein binding, but many enzym...
Development of efficient artificial enzymes is an emerging field in nanobiotechnology, since these a...
The present study evaluates the role of graphene oxide’s (GO’s) peroxidase-like and inherent/carboca...
A low-cost and facile preparation of water-soluble carbon nanomaterials from commercial available gr...
The work describes a carbon-based peroxidase mimic, N- and B-codoped reduced graphene oxide (NB-rGO)...
“Artificial enzymes”, a term coined by Breslow for enzyme mimics is an exciting and promising branch...
Nanozymes, the enzyme-mimicking nanomaterials, have been developed to overcome the low stability and...
Prussian blue nanoparticles (PB NPs) stabilized with surface capping agents as functional mimics of ...
The design and construction of efficient artificial enzymes is highly desirable. Recent studies have...
A catalytic reduction of graphene oxide (GO) by glutathione peroxidase (GPx) mimics is reported. Thi...
Dipeptide-polyoxometalates (POMs)-graphene oxide (GO) ternary hybrid is an excellent peroxidase-like...
We established four kinds of good dispersing systems of graphene and its derivatives with different ...
Accurate detection of trace analytes in biological samples is essential for medical diagnostics but ...
Biological systems can often drive complex chemical transformations under mild conditions (e.g., aqu...
Supramolecular colorless copper(I)–thiourea hydrogel (Cu-TU gel) has been made a mechanically stron...
Graphene oxide (GO) is being investigated extensively for enzyme and protein binding, but many enzym...
Development of efficient artificial enzymes is an emerging field in nanobiotechnology, since these a...
The present study evaluates the role of graphene oxide’s (GO’s) peroxidase-like and inherent/carboca...
A low-cost and facile preparation of water-soluble carbon nanomaterials from commercial available gr...