Skin-compatible printed stretchable conductors that combine a low gauge factor with a high durability over many strain cycles are still a great challenge. Here, a graphene nanoplatelet-based colloidal ink utilizing a skin-compatible thermoplastic polyurethane (TPU) binder with adjustable rheology is developed. Stretchable conductors that remain conductive even under 100% strain and demonstrate high fatigue resistance to cyclic strains of 20-50% are realized via printing on TPU. The sheet resistances of these conductors after drying at 120 °C are as low as 34 ω □ -1mil -1. Furthermore, photonic annealing at several energy levels is used to decrease the sheet resistance to <10 ω □ -1mil -1, with stretchability and fatigue resistance being ...
The necessity to place sensors far away from the processing unit in smart clothes or artificial skin...
As printed electronics is evolving toward applications in biosensing and wearables, the need for nov...
As printed electronics is evolving toward applications in biosensing and wearables, the need for nov...
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...
Printable stretchable devices, which can be used in a wide range of environments, are required for a...
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...
As printed electronics is evolving toward applications in biosensing and wearables, the need for nov...
The necessity to place sensors far away from the processing unit in smart clothes or artificial skin...
As printed electronics is evolving toward applications in biosensing and wearables, the need for nov...
As printed electronics is evolving toward applications in biosensing and wearables, the need for nov...
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...
Printable stretchable devices, which can be used in a wide range of environments, are required for a...
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...
As printed electronics is evolving toward applications in biosensing and wearables, the need for nov...
The necessity to place sensors far away from the processing unit in smart clothes or artificial skin...
As printed electronics is evolving toward applications in biosensing and wearables, the need for nov...
As printed electronics is evolving toward applications in biosensing and wearables, the need for nov...