We present a novel and efficient nanoporous microfluidic biochip consisting of a functionalized chitosan/anatase titanium dioxide nanoparticles (antTiO2-CH) electrode integrated in a polydimethylsiloxane (PDMS) microchannel assembly. The electrode surface can be enzyme functionalized depending on the application. We studied in detail cholesterol sensing using the cholesterol esterase (ChEt) and cholesterol oxidase (ChOx) functionalized chitosan supported mesoporous antTiO2-CH microfluidic electrode. The available functional groups present in the nanoporous antTiO2-CH surface in this microfluidic biochip can play an important role for enzyme functionalization, which has been quantified by the X-ray photoelectron spectroscopic technique. The ...
Nanoparticle-mediated bio-sensing promoted the development of novel sensors in the front of medical ...
Electrochemical detection methods are highly attractive for the monitoring of glucose, cholesterol, ...
reportWe report the modification of titania (TiO2) nanotubes for quantitative electrochemical (EC) d...
We present a novel and efficient nanoporous microfluidic biochip consisting of a functionalized chit...
The surface modified and aligned mesoporous anatase titania nanofiber mats (TiO<sub>2</sub>–NF) have...
ABSTRACT: The surface modified and aligned mesoporous anatase titania nanofiber mats (TiO2−NF) have ...
We present a novel and efficient nanoporous microfluidic biochip consisting of a functionalized chit...
We report results of studies relating to the fabrication of a microfluidics cholesterol sensor based...
This report describes the fabrication of a novel microfluidics nanobiochip based on a composite comp...
Bioactive electrode of uniformly dispersed TiO2 in Chitoan (CS) was fabricated on ITO substrate for ...
Fourier transform infrared (FT-IR) and UV-visible spectroscopy were used to optimize TiO2 concentrat...
We present results of the studies relating to fabrication of a microfluidic biosensor chip based on ...
The application of solid-state nanopore technology for biosensing is a rapidly developing area of re...
In this work, a highly sensitive and stable sensing scaffold consisting of gold nanoparticle-encapsu...
A novel biosensor for glucose was prepared by adsorption of 1,1`-bis(4-carboxybenzyl)-4,4`-bipyridin...
Nanoparticle-mediated bio-sensing promoted the development of novel sensors in the front of medical ...
Electrochemical detection methods are highly attractive for the monitoring of glucose, cholesterol, ...
reportWe report the modification of titania (TiO2) nanotubes for quantitative electrochemical (EC) d...
We present a novel and efficient nanoporous microfluidic biochip consisting of a functionalized chit...
The surface modified and aligned mesoporous anatase titania nanofiber mats (TiO<sub>2</sub>–NF) have...
ABSTRACT: The surface modified and aligned mesoporous anatase titania nanofiber mats (TiO2−NF) have ...
We present a novel and efficient nanoporous microfluidic biochip consisting of a functionalized chit...
We report results of studies relating to the fabrication of a microfluidics cholesterol sensor based...
This report describes the fabrication of a novel microfluidics nanobiochip based on a composite comp...
Bioactive electrode of uniformly dispersed TiO2 in Chitoan (CS) was fabricated on ITO substrate for ...
Fourier transform infrared (FT-IR) and UV-visible spectroscopy were used to optimize TiO2 concentrat...
We present results of the studies relating to fabrication of a microfluidic biosensor chip based on ...
The application of solid-state nanopore technology for biosensing is a rapidly developing area of re...
In this work, a highly sensitive and stable sensing scaffold consisting of gold nanoparticle-encapsu...
A novel biosensor for glucose was prepared by adsorption of 1,1`-bis(4-carboxybenzyl)-4,4`-bipyridin...
Nanoparticle-mediated bio-sensing promoted the development of novel sensors in the front of medical ...
Electrochemical detection methods are highly attractive for the monitoring of glucose, cholesterol, ...
reportWe report the modification of titania (TiO2) nanotubes for quantitative electrochemical (EC) d...