Printable stretchable devices, which can be used in a wide range of environments, are required for a range of flexible or stretchable electronics applications. Here we present an ink containing liquid exfoliated graphene and natural rubber, which can be printed onto a variety of elastomeric substrates and recover conductance after multiple strains of up to 15%. In addition, the printed composite acts as a strain sensor with a gauge factor of around 7. The robust character of these composites allows for operation at temperatures up to 150 °C. The combination of the effectiveness of the device, along with comparable performance at elevated temperatures while being relatively cheap makes this ideal for integration with automotive components. F...
Conductive electrodes and electric circuits that can remain active and electrically stable under lar...
The necessity to place sensors far away from the processing unit in smart clothes or artificial ski...
As printed electronics is evolving toward applications in biosensing and wearables, the need for nov...
Printable stretchable devices, which can be used in a wide range of environments, are required for a...
Skin-compatible printed stretchable conductors that combine a low gauge factor with a high durabilit...
Skin-compatible printed stretchable conductors that combine a low gauge factor with a high durabilit...
Skin-compatible printed stretchable conductors that combine a low gauge factor with a high durabilit...
Skin-compatible printed stretchable conductors that combine a low gauge factor with a high durabilit...
Skin-compatible printed stretchable conductors that combine a low gauge factor with a high durabilit...
Skin-compatible printed stretchable conductors that combine a low gauge factor with a high durabilit...
Skin-compatible printed stretchable conductors that combine a low gauge factor with a high durabilit...
Skin-compatible printed stretchable conductors that combine a low gauge factor with a high durabilit...
Skin-compatible printed stretchable conductors that combine a low gauge factor with a high durabilit...
The necessity to place sensors far away from the processing unit in smart clothes or artificial skin...
Conductive electrodes and electric circuits that can remain active and electrically stable under lar...
Conductive electrodes and electric circuits that can remain active and electrically stable under lar...
The necessity to place sensors far away from the processing unit in smart clothes or artificial ski...
As printed electronics is evolving toward applications in biosensing and wearables, the need for nov...
Printable stretchable devices, which can be used in a wide range of environments, are required for a...
Skin-compatible printed stretchable conductors that combine a low gauge factor with a high durabilit...
Skin-compatible printed stretchable conductors that combine a low gauge factor with a high durabilit...
Skin-compatible printed stretchable conductors that combine a low gauge factor with a high durabilit...
Skin-compatible printed stretchable conductors that combine a low gauge factor with a high durabilit...
Skin-compatible printed stretchable conductors that combine a low gauge factor with a high durabilit...
Skin-compatible printed stretchable conductors that combine a low gauge factor with a high durabilit...
Skin-compatible printed stretchable conductors that combine a low gauge factor with a high durabilit...
Skin-compatible printed stretchable conductors that combine a low gauge factor with a high durabilit...
Skin-compatible printed stretchable conductors that combine a low gauge factor with a high durabilit...
The necessity to place sensors far away from the processing unit in smart clothes or artificial skin...
Conductive electrodes and electric circuits that can remain active and electrically stable under lar...
Conductive electrodes and electric circuits that can remain active and electrically stable under lar...
The necessity to place sensors far away from the processing unit in smart clothes or artificial ski...
As printed electronics is evolving toward applications in biosensing and wearables, the need for nov...