The development of next generation medicines demands more sensitive and reliable label-free sensing able to cope with increasing needs of multiplexing and shorter times to results. Field effect transistor-based biosensors emerge as one of the main possible technologies to cover the existing gap. The general trend for the sensors has been miniaturization with the expectation of improving sensitivity and response time but presenting issues with reproducibility and noise level. Here we propose a Fin-Field Effect Transistor (FinFET) with a high height to width aspect ratio for electrochemical biosensing solving the issue of nanosensors in terms of reproducibility and noise, while keeping the fast response time. We fabricated different devices a...
A novel type of bioelectronic region ion sensitive field effect transistor (RISFET) nanosensor was c...
The study of interactions between organic biomolecules and semiconducting surfaces is an important c...
ABSTRACT: Transistor-based nanoelectronic sensors are capable of label-free real-time chemical and b...
The development of next generation medicines demands more sensitive and reliable label-free sensing ...
The development of next generation medicines demands more sensitive and reliable label-free sensing ...
A double-gate (DG) fin field effect transistor (FinFET) is discussed as new label-free ion and biolo...
We present a review of field effect transistors (FET) from the point of view of their applications t...
In the last decade, nanoscale field-effect transistor biosensors have proven to be powerful, ultra-s...
In this work we combine a Fin Field Effect Transistor (Fin-FET) characterised by a high height to wi...
Field-effect transistors (FETs) form an established technology for sensing applications. However, re...
Field-effect transistors (FETs) form an established technology for sensing applications. However, re...
Field-effect transistors (FETs) form an established technology for sensing applications. However, re...
Biosensing technologies are required for point-of-care testing (POCT). We determine some physical pa...
Charge based detection of bio-analytes using field-effect-transistors (FET's) presents an attractive...
Field-effect transistor (FET) sensors and in particular their nanoscale variant of silicon nanowire ...
A novel type of bioelectronic region ion sensitive field effect transistor (RISFET) nanosensor was c...
The study of interactions between organic biomolecules and semiconducting surfaces is an important c...
ABSTRACT: Transistor-based nanoelectronic sensors are capable of label-free real-time chemical and b...
The development of next generation medicines demands more sensitive and reliable label-free sensing ...
The development of next generation medicines demands more sensitive and reliable label-free sensing ...
A double-gate (DG) fin field effect transistor (FinFET) is discussed as new label-free ion and biolo...
We present a review of field effect transistors (FET) from the point of view of their applications t...
In the last decade, nanoscale field-effect transistor biosensors have proven to be powerful, ultra-s...
In this work we combine a Fin Field Effect Transistor (Fin-FET) characterised by a high height to wi...
Field-effect transistors (FETs) form an established technology for sensing applications. However, re...
Field-effect transistors (FETs) form an established technology for sensing applications. However, re...
Field-effect transistors (FETs) form an established technology for sensing applications. However, re...
Biosensing technologies are required for point-of-care testing (POCT). We determine some physical pa...
Charge based detection of bio-analytes using field-effect-transistors (FET's) presents an attractive...
Field-effect transistor (FET) sensors and in particular their nanoscale variant of silicon nanowire ...
A novel type of bioelectronic region ion sensitive field effect transistor (RISFET) nanosensor was c...
The study of interactions between organic biomolecules and semiconducting surfaces is an important c...
ABSTRACT: Transistor-based nanoelectronic sensors are capable of label-free real-time chemical and b...