A novel flexible nanocomposite pressure sensor with a tensile strength of about 47 MPa is fabricated in this work. Nanolayers of titanium dioxide (titania nanolayers, TNL) synthesized by hydrothermal method are used to reinforce the polyvinylidene fluoride (PVDF) by simple solution mixing. A hybrid composite is prepared by incorporating the TNL (2.5 wt %) with reduced graphene oxide (rGO) (2.5 wt %) synthesized by improved graphene oxide synthesis to form a PVDF/rGO-TNL composite. A comparison between PVDF, PVDF/rGO (5 wt %), PVDF/TNL (5 wt %) and PVDF/rGO-TNL (total additives 5 wt %) samples are analyzed for their sensing, thermal and dielectric characteristics. The new shape of additives (with sharp morphology), good interaction and well ...
The main focus in this thesis was to study the suitability of flexographic printing and new electrod...
This paper presents large-area-printed flexible pressure sensors developed with an all screen-printi...
Integrating efficient energy harvesting materials in to soft, flexible, and eco-friendly substrates ...
A novel flexible nanocomposite pressure sensor with a tensile strength of about 47 MPa is fabricated...
This study reports the synthesis and characterization of polyvinylidene fluoride (PVDF) nanocomposit...
A robust piezo-resistive nanocomposite flexible sensor has been developed using an innovative combin...
We have developed a highly sensitive flexible pressure sensor based on a piezopolymer and silver nan...
In this study, novel three-phase polymer nanocomposites comprising of polyvinylidene fluoride (PVDF)...
Supplementary Materials: The following is available online at http://www.mdpi.com/1996-1944/12/21/35...
Polymer-based composites reinforced with nanocarbonaceous materials can be tailored for functional a...
Polymer composites with nanomaterials such as graphene nanoplatelets and carbon nanotubes are a new ...
Flexible electronics have gained eminent importance in recent years due to their high mechanical str...
Gas sensing properties at room temperature and energy harvesting performances are realized for the p...
Inorganic nanocarbon hybrid materials are good alternatives for superior electrochemical performance...
Piezoelectric flexible substrates are of great importance for acoustic wave microsensor applications...
The main focus in this thesis was to study the suitability of flexographic printing and new electrod...
This paper presents large-area-printed flexible pressure sensors developed with an all screen-printi...
Integrating efficient energy harvesting materials in to soft, flexible, and eco-friendly substrates ...
A novel flexible nanocomposite pressure sensor with a tensile strength of about 47 MPa is fabricated...
This study reports the synthesis and characterization of polyvinylidene fluoride (PVDF) nanocomposit...
A robust piezo-resistive nanocomposite flexible sensor has been developed using an innovative combin...
We have developed a highly sensitive flexible pressure sensor based on a piezopolymer and silver nan...
In this study, novel three-phase polymer nanocomposites comprising of polyvinylidene fluoride (PVDF)...
Supplementary Materials: The following is available online at http://www.mdpi.com/1996-1944/12/21/35...
Polymer-based composites reinforced with nanocarbonaceous materials can be tailored for functional a...
Polymer composites with nanomaterials such as graphene nanoplatelets and carbon nanotubes are a new ...
Flexible electronics have gained eminent importance in recent years due to their high mechanical str...
Gas sensing properties at room temperature and energy harvesting performances are realized for the p...
Inorganic nanocarbon hybrid materials are good alternatives for superior electrochemical performance...
Piezoelectric flexible substrates are of great importance for acoustic wave microsensor applications...
The main focus in this thesis was to study the suitability of flexographic printing and new electrod...
This paper presents large-area-printed flexible pressure sensors developed with an all screen-printi...
Integrating efficient energy harvesting materials in to soft, flexible, and eco-friendly substrates ...