© 2017 Here, we present a flexible and low-cost inkjet printed electrochemical sensor for enzyme-free glucose analysis. Versatility, short fabrication time and low cost make inkjet printing a valuable alternative to traditional sensor manufacturing techniques. We fabricated electro-chemical glucose sensors by inkjet printing electrodes on a flexible polyethylene terephthalate substrate. CuO microparticles were used to modify our electrodes, leading to a sensitive, stable and cost-effective platform for non-enzymatic detection of glucose. Selectivity, reproducibility, and life-time provided by the CuO functionalization demonstrated that these sensors are reliable tools for personalized diagnostics and self-assessment of an individual's healt...
This paper describes a paper-based colorimetric biosensor for measuring glucose concentration levels...
Piezoelectric inkjet printing of polymers and proteins holds great promise for fabrication of miniat...
VTT has long experience in development of inkjet printable functional inks including printable enzym...
The availability of low cost, efficient and wearable glucose sensors is one of the prerequisites for...
This paper proposes a simple and rapid fabrication of a glucose sensor based on inkjet printing meth...
In recent years, inkjet printing has received increasing attention from academic and industrial comm...
none6The prototype of an amperometric glucose biosensorwas realized by thermal inkjet printing using...
This paper describes a simple, convenient approach to the fabrication of microband electrodes and mi...
We reported a single-use non-enzymatic glucose biosensor based on a printed CuO nanoparticles film o...
Here we present two types of all-printable, highly stretchable, and inexpensive devices based on pla...
Paper-based analytical technologies enable quantitative and rapid analysis of analytes from various ...
It is becoming increasingly more important to provide a low-cost point-of-care diagnostic device wit...
It is becoming increasingly more important to provide a low-cost point-of-care diagnostic device wit...
A paper-based colorimetric biosensor suitable for point-of-care bioassay of blood samples is devel...
A simple paper-based microfluidic device, fabricated on a highly porous coating consisting of functi...
This paper describes a paper-based colorimetric biosensor for measuring glucose concentration levels...
Piezoelectric inkjet printing of polymers and proteins holds great promise for fabrication of miniat...
VTT has long experience in development of inkjet printable functional inks including printable enzym...
The availability of low cost, efficient and wearable glucose sensors is one of the prerequisites for...
This paper proposes a simple and rapid fabrication of a glucose sensor based on inkjet printing meth...
In recent years, inkjet printing has received increasing attention from academic and industrial comm...
none6The prototype of an amperometric glucose biosensorwas realized by thermal inkjet printing using...
This paper describes a simple, convenient approach to the fabrication of microband electrodes and mi...
We reported a single-use non-enzymatic glucose biosensor based on a printed CuO nanoparticles film o...
Here we present two types of all-printable, highly stretchable, and inexpensive devices based on pla...
Paper-based analytical technologies enable quantitative and rapid analysis of analytes from various ...
It is becoming increasingly more important to provide a low-cost point-of-care diagnostic device wit...
It is becoming increasingly more important to provide a low-cost point-of-care diagnostic device wit...
A paper-based colorimetric biosensor suitable for point-of-care bioassay of blood samples is devel...
A simple paper-based microfluidic device, fabricated on a highly porous coating consisting of functi...
This paper describes a paper-based colorimetric biosensor for measuring glucose concentration levels...
Piezoelectric inkjet printing of polymers and proteins holds great promise for fabrication of miniat...
VTT has long experience in development of inkjet printable functional inks including printable enzym...