“Artificial enzymes”, a term coined by Breslow for enzyme mimics is an exciting and promising branch of biomimetic chemistry aiming to imitate the general and essential principles of natural enzymes using a variety of alternative materials including heterogeneous catalysts. Peroxidase enzymes represent a large family of oxidoreductases that typically catalyze biological reactions with high substrate affinity and specificity under relatively mild conditions and thus offer a wide range of practical applications in many areas of science. The increasing understanding of general principles as well as intrinsic drawbacks such as low operational stability, high cost, difficulty in purification and storage, and sensitivity of catalytic activity tow...
Over the past few decades, researchers have established artificial enzymes as highly stable and low-...
Biocatalyst immobilization onto carbon-based nanosupports has been implemented in a variety of appli...
Herein a hybrid catalyst consisting of “naked” Au-NPs <i>in situ</i> grown on graphene sheets is eng...
“Artificial enzymes”, a term coined by Breslow for enzyme mimics is an exciting and promising branch...
The work describes a carbon-based peroxidase mimic, N- and B-codoped reduced graphene oxide (NB-rGO)...
The work describes a carbon-based peroxidase mimic, N- and B-codoped reduced graphene oxide (NB-rGO)...
Nanozymes, the enzyme-mimicking nanomaterials, have been developed to overcome the low stability and...
‘Nanozymes’, a term coined by Scrimin, Pasquato, and co-workers to describe nanomaterials with enzym...
Development of efficient artificial enzymes is an emerging field in nanobiotechnology, since these a...
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...
In this article, for the first time, two-dimensional hybrid mesoporous Fe2O3-graphene (mFe(2)O(3)-G)...
Nanomaterials-based biomimetic catalysts with multiple functions are necessary to address challenges...
Biological systems can often drive complex chemical transformations under mild conditions (e.g., aqu...
The work presented in this thesis entitled “Graphene Based Nanomaterials for Biosensing and Catalyti...
Over the past few decades, researchers have established artificial enzymes as highly stable and low-...
Biocatalyst immobilization onto carbon-based nanosupports has been implemented in a variety of appli...
Herein a hybrid catalyst consisting of “naked” Au-NPs <i>in situ</i> grown on graphene sheets is eng...
“Artificial enzymes”, a term coined by Breslow for enzyme mimics is an exciting and promising branch...
The work describes a carbon-based peroxidase mimic, N- and B-codoped reduced graphene oxide (NB-rGO)...
The work describes a carbon-based peroxidase mimic, N- and B-codoped reduced graphene oxide (NB-rGO)...
Nanozymes, the enzyme-mimicking nanomaterials, have been developed to overcome the low stability and...
‘Nanozymes’, a term coined by Scrimin, Pasquato, and co-workers to describe nanomaterials with enzym...
Development of efficient artificial enzymes is an emerging field in nanobiotechnology, since these a...
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...
In this article, for the first time, two-dimensional hybrid mesoporous Fe2O3-graphene (mFe(2)O(3)-G)...
Nanomaterials-based biomimetic catalysts with multiple functions are necessary to address challenges...
Biological systems can often drive complex chemical transformations under mild conditions (e.g., aqu...
The work presented in this thesis entitled “Graphene Based Nanomaterials for Biosensing and Catalyti...
Over the past few decades, researchers have established artificial enzymes as highly stable and low-...
Biocatalyst immobilization onto carbon-based nanosupports has been implemented in a variety of appli...
Herein a hybrid catalyst consisting of “naked” Au-NPs <i>in situ</i> grown on graphene sheets is eng...