A robust piezo-resistive nanocomposite flexible sensor has been developed using an innovative combination of materials, i.e., magnetite-decorated graphene/poly(ionic liquid) compatibilized poly(-urethane) (TPU/Fe3O4@RGO-PIL). The transducer has been fabricated by spray layer by layer (sLbL) to structure an original three-dimensional architecture in which reduced graphene oxide (RGO) platelets are used to build the conducting network, PIL stabilizes this percolated assembly, Fe3O4 NP act as nanospacers between platelets to prevent their stacking and facilitate their switching, and TPU matrix brings cohesion and flexibility to the whole assembly. This strategy results in highly sensitive TPU/Fe3O4@RGO-PIL flexible nanocomposite sensors (high ...
Piezoresistive sponges represent a popular design for highly flexible pressure sensors and are typic...
Electro-conductive polymer nanocomposites have been intensively used as a new structural and functio...
Abstract Embedding piezoelectric nanowires within a soft elastomer material should provide a superio...
A robust piezo-resistive nanocomposite flexible sensor has been developed using an innovative combin...
The demand for high performance multifunctional wearable devices is more and more pushing towards th...
Flexible wearable pressure sensors have received extensive attention in recent years because of the ...
A wearable, low-cost, highly repeatable piezoresistive sensor was fabricated by the synthesis of mod...
This work focuses on the preparation of a piezoresistive sensor device, by exploiting an amphiphilic...
The demand for high performance multifunctional wearable devices is more and more pushing towards th...
The development of pressure sensors is crucial for the implementation of electronic skins and for he...
Stretchable and wearable strain-sensing devices are appropriate for motion detection, biomedical mon...
Recently, 3D porous graphene-polymer composite-based piezoresistive sensors have drawn great interes...
We are reporting, a novel reduced graphene oxide (RGO) and silver (Ag) nanocomposite based piezoresi...
This work reports on the design, the development, and a preliminary characterization of highly stret...
This article details the development of a thin film piezoresistive screen printed pressure sensor on...
Piezoresistive sponges represent a popular design for highly flexible pressure sensors and are typic...
Electro-conductive polymer nanocomposites have been intensively used as a new structural and functio...
Abstract Embedding piezoelectric nanowires within a soft elastomer material should provide a superio...
A robust piezo-resistive nanocomposite flexible sensor has been developed using an innovative combin...
The demand for high performance multifunctional wearable devices is more and more pushing towards th...
Flexible wearable pressure sensors have received extensive attention in recent years because of the ...
A wearable, low-cost, highly repeatable piezoresistive sensor was fabricated by the synthesis of mod...
This work focuses on the preparation of a piezoresistive sensor device, by exploiting an amphiphilic...
The demand for high performance multifunctional wearable devices is more and more pushing towards th...
The development of pressure sensors is crucial for the implementation of electronic skins and for he...
Stretchable and wearable strain-sensing devices are appropriate for motion detection, biomedical mon...
Recently, 3D porous graphene-polymer composite-based piezoresistive sensors have drawn great interes...
We are reporting, a novel reduced graphene oxide (RGO) and silver (Ag) nanocomposite based piezoresi...
This work reports on the design, the development, and a preliminary characterization of highly stret...
This article details the development of a thin film piezoresistive screen printed pressure sensor on...
Piezoresistive sponges represent a popular design for highly flexible pressure sensors and are typic...
Electro-conductive polymer nanocomposites have been intensively used as a new structural and functio...
Abstract Embedding piezoelectric nanowires within a soft elastomer material should provide a superio...