A novel one-step electrochemical method for controlled synthesis of electroactive gold nanoparticles (Au NPs) in an organic medium using an organometallic precursor Au(PPh3)Cl [Ph = phenyl] has been proposed. The hierarchical assembly of Au nanostructures has been tuned on indium tin oxide (ITO) surface during electrochemical reduction of Au(PPh3)Cl using cysteamine. The Au NPs act as building blocks to form secondary structures of Au that has been confirmed using transmission electron microscopic studies. The presence of triphenylphosphine in Au film enhances the electrocatalytic activity, resulting in higher charge transfer kinetics. The cholesterol oxidase (ChOx) as a model enzyme has been immobilized on various fabricated nanostructured...
Nanoporous gold (np-Au), because of its high surface area-to-volume ratio, excellent conductivity, c...
Nanoporous gold (np-Au), because of its high surface area-to-volume ratio, excellent conductivity, c...
Nanoporous gold (np-Au), because of its high surface area-to-volume ratio, excellent conductivity, c...
We report the fabrication of a bi-enzyme functionalized nanostructured Au electrode for the mediator...
We developed a versatile and highly sensitive biosensor platform. The platform is based on electroch...
Two types of gold nanostructures are discussed: charge(citrate)-stabilized and sterically(OA)-stabil...
Gold nanostructures were fabricated on a transparent indium tin oxide (ITO) coated PET substrate by ...
Biomolecules are chemical compounds found in living organisms which are the building blocks of life ...
The research herein reports the characterization and development of a novel modified gold electrode ...
Mediator free enzyme sensor has been fabricated by covalently immobilizing cholesterol oxidase (ChOx...
A novel sensing platform for the study of enzymatic kinetics using gold nanoparticles dispersed in a...
The developed method used three enzymes comprised of cholesterol esterase, cholesterol oxidase, and ...
We developed a versatile and highly sensitive biosensor platform. The platform is based on electroch...
Nanoporous gold (np-Au), because of its high surface area-to-volume ratio, excellent conductivity, c...
This paper describes ultrathin gold nanowires (NWs) and nanoparticles (NPs) prepared by oleylamine (...
Nanoporous gold (np-Au), because of its high surface area-to-volume ratio, excellent conductivity, c...
Nanoporous gold (np-Au), because of its high surface area-to-volume ratio, excellent conductivity, c...
Nanoporous gold (np-Au), because of its high surface area-to-volume ratio, excellent conductivity, c...
We report the fabrication of a bi-enzyme functionalized nanostructured Au electrode for the mediator...
We developed a versatile and highly sensitive biosensor platform. The platform is based on electroch...
Two types of gold nanostructures are discussed: charge(citrate)-stabilized and sterically(OA)-stabil...
Gold nanostructures were fabricated on a transparent indium tin oxide (ITO) coated PET substrate by ...
Biomolecules are chemical compounds found in living organisms which are the building blocks of life ...
The research herein reports the characterization and development of a novel modified gold electrode ...
Mediator free enzyme sensor has been fabricated by covalently immobilizing cholesterol oxidase (ChOx...
A novel sensing platform for the study of enzymatic kinetics using gold nanoparticles dispersed in a...
The developed method used three enzymes comprised of cholesterol esterase, cholesterol oxidase, and ...
We developed a versatile and highly sensitive biosensor platform. The platform is based on electroch...
Nanoporous gold (np-Au), because of its high surface area-to-volume ratio, excellent conductivity, c...
This paper describes ultrathin gold nanowires (NWs) and nanoparticles (NPs) prepared by oleylamine (...
Nanoporous gold (np-Au), because of its high surface area-to-volume ratio, excellent conductivity, c...
Nanoporous gold (np-Au), because of its high surface area-to-volume ratio, excellent conductivity, c...
Nanoporous gold (np-Au), because of its high surface area-to-volume ratio, excellent conductivity, c...