Recording extracellular potentials from electrogenic cells (especially neurons) is the hallmark destination of modern bioelectronics. While fabrication of flexible and biocompatible in vivo devices via silicon technology is complicated and time-consuming, graphene field-effect transistors (GFETs), instead, can easily be fabricated on flexible and biocompatible substrates. In this work, we compare GFETs fabricated on rigid (SiO2 /Si and sapphire) and flexible (polyimide) substrates. The GFETs, fabricated on the polyimide, exhibit extremely large transconductance values, up to 11 mS·V–1, and mobility over 1750 cm2 ·V–1·s–1. In vitro recordings from cardiomyocyte-like cell culture are performed by GFETs on a rigid transparent substrate (sapphi...
Part 16: Flexible and Transparent Oxide ElectronicsInternational audienceThis work presents an exper...
In the work, we present the novel kind of graphene-on-silicon heterostructures and build functional ...
We show that nanowire field-effect transistor (NWFET) arrays fabricated on both planar and flexible ...
Having a chip with a large array of sensitive, fast and linearly responsive, and stable recording si...
Graphene solution-gated field-effect transistors (SGFETs) are a promising platform for the recording...
Recording extracellular potentials from electrogenic cells (especially neurons) is the hallmark dest...
Graphene’s advantageous electrical, mechanical and biological properties make it a perfect candidate...
International audienceThe emergence of nanoelectronics applied to neural interfaces has started few ...
There are plenty of invasive methods for studying a neuronal network’s activities [1]. Of course, th...
Nanowire field-effect transistors (NW-FETs) have been shown to be powerful building blocks for nanos...
The work is focused on the fabrication and analysis of graphene-based, solution-gated field effect t...
Graphene based devices have already proven to be extremely sensitive and very useful in a wide spect...
Graphene is a promising material possessing features relevant to bioelectronics applications. Graphe...
Since the discovery of the two-dimensional (2D) carbon material, graphene, just over a decade ago, t...
Investigation and modulation of the electrical activity of neurons and cardiomyocytes is essential t...
Part 16: Flexible and Transparent Oxide ElectronicsInternational audienceThis work presents an exper...
In the work, we present the novel kind of graphene-on-silicon heterostructures and build functional ...
We show that nanowire field-effect transistor (NWFET) arrays fabricated on both planar and flexible ...
Having a chip with a large array of sensitive, fast and linearly responsive, and stable recording si...
Graphene solution-gated field-effect transistors (SGFETs) are a promising platform for the recording...
Recording extracellular potentials from electrogenic cells (especially neurons) is the hallmark dest...
Graphene’s advantageous electrical, mechanical and biological properties make it a perfect candidate...
International audienceThe emergence of nanoelectronics applied to neural interfaces has started few ...
There are plenty of invasive methods for studying a neuronal network’s activities [1]. Of course, th...
Nanowire field-effect transistors (NW-FETs) have been shown to be powerful building blocks for nanos...
The work is focused on the fabrication and analysis of graphene-based, solution-gated field effect t...
Graphene based devices have already proven to be extremely sensitive and very useful in a wide spect...
Graphene is a promising material possessing features relevant to bioelectronics applications. Graphe...
Since the discovery of the two-dimensional (2D) carbon material, graphene, just over a decade ago, t...
Investigation and modulation of the electrical activity of neurons and cardiomyocytes is essential t...
Part 16: Flexible and Transparent Oxide ElectronicsInternational audienceThis work presents an exper...
In the work, we present the novel kind of graphene-on-silicon heterostructures and build functional ...
We show that nanowire field-effect transistor (NWFET) arrays fabricated on both planar and flexible ...