Proteins present an ecofriendly alternative to many of the synthetic components currently used in electronics. They can therefore in combination with flexibility and electroactivity uncover a range of new opportunities in the field of flexible and green electronics. In this study, silk-based ionic conductors are turned into stable thin films by embedding them with 2D nanoclay platelets. More specifically, this material is utilized to develop a flexible and ecofriendly motion-sensitive touchscreen device. The display-like sensor can readily transmit light, is easy to recycle and can monitor the motion of almost any part of the human body. It also displays a significantly lower sheet resistance during bending and stretching regimes than the v...
Smart wearable devices and sensors have been fabricated by screen printing of metal paste as functio...
The inherent limitation of stretchable conductor design is mechanical mismatch, because typical Youn...
This article demonstrates the use of the electrodeposition technique as a viable alternative for dep...
Soft and stretchable electronic devices are important in wearable and implantable applications becau...
Presently, flexible electromechanical sensors are of particular interest to next generation mobile a...
Portable and wearable electronics that feature lightweight, highly compact and low cost can enable a...
Flexible and thin-film devices are of great interest in epidermal and implantable bioelectronics. Th...
Human skin provides an interface that transduces external stimuli into electrical signals for commun...
Summary: Stretchable, biocompatible devices can bridge electronics and biology. However, most stretc...
Flexible and thin-film devices are of great interest in epidermal and implantable bioelectronics. Th...
The emergence of ionotronic materials has been recently exploited for interfacing electronics and bi...
The biocompatibility of conducting polymers (CPs) makes them promising for a variety of biomedical a...
We report a high-performance, flexible and robust metal nanotrough-embedded transparent conducting h...
This thesis has focused on the development and application of highly stretchable electronic conducto...
Both sophisticated electronic systems and human biological systems rely on signal transduction and t...
Smart wearable devices and sensors have been fabricated by screen printing of metal paste as functio...
The inherent limitation of stretchable conductor design is mechanical mismatch, because typical Youn...
This article demonstrates the use of the electrodeposition technique as a viable alternative for dep...
Soft and stretchable electronic devices are important in wearable and implantable applications becau...
Presently, flexible electromechanical sensors are of particular interest to next generation mobile a...
Portable and wearable electronics that feature lightweight, highly compact and low cost can enable a...
Flexible and thin-film devices are of great interest in epidermal and implantable bioelectronics. Th...
Human skin provides an interface that transduces external stimuli into electrical signals for commun...
Summary: Stretchable, biocompatible devices can bridge electronics and biology. However, most stretc...
Flexible and thin-film devices are of great interest in epidermal and implantable bioelectronics. Th...
The emergence of ionotronic materials has been recently exploited for interfacing electronics and bi...
The biocompatibility of conducting polymers (CPs) makes them promising for a variety of biomedical a...
We report a high-performance, flexible and robust metal nanotrough-embedded transparent conducting h...
This thesis has focused on the development and application of highly stretchable electronic conducto...
Both sophisticated electronic systems and human biological systems rely on signal transduction and t...
Smart wearable devices and sensors have been fabricated by screen printing of metal paste as functio...
The inherent limitation of stretchable conductor design is mechanical mismatch, because typical Youn...
This article demonstrates the use of the electrodeposition technique as a viable alternative for dep...