Stretchable electrodes comprising thin gold films with initial nanocracks on elastic substrates of poly(dimethylsiloxane) are developed in this work, which can be stretched reversibly while maintaining conductivity to an applied uniaxial strain as large as 120%. Reliable electromechanical performance is essential for the application of stretchable electronics as bioelectronic interfaces under various working conditions; therefore, the electrical and thermal effects on the electromechanical performance of the stretchable gold film electrodes are investigated in this work. It is found that the stretchability deteriorates to some extent depending on the electrical and thermal treatments. Microstructures and stress analysis in the cracks are st...
Wearable electronics allow us to push the boundaries of human interaction with technology; however, ...
© 2020 Elsevier Ltd Pre-straining the elastic substrate is a commonly used strategy to fabricate buc...
NoThis paper presents a novel method to prepare stretchable conductors and pressure sensors based on...
Stretchable electrodes comprising thin gold films with initial nanocracks on elastic substrates of p...
Stretchable electronic devices rely on stretchable conductors to form device interconnects and elect...
Stretching metallic conductors to large deformations while maintaining a low and constant electrical...
Crack control strategies have been proven very useful for enhancing the stretchability of metal film...
Stretchable electronics are an emergent class of electronics that can retain their electric function...
Stretchable electronic devices rely on stretchable conductors to form device interconnects and elect...
The current growth of the wearable electronics market has inspired the development of soft and stret...
Stretchable conductors are the basic units of advanced flexible electronic devices, such as skin‐lik...
Flexible electronic devices rely on effective conductors integrated with elastomeric substrates. Thi...
Stretchable electronics technologies have gained a lot of interest for reasons such as user comfort ...
Stretchable electronics promise to extend the application range of conventional electronics by enabl...
Thin metal films on compliant polymer substrates are of major interest for flexible electronic techn...
Wearable electronics allow us to push the boundaries of human interaction with technology; however, ...
© 2020 Elsevier Ltd Pre-straining the elastic substrate is a commonly used strategy to fabricate buc...
NoThis paper presents a novel method to prepare stretchable conductors and pressure sensors based on...
Stretchable electrodes comprising thin gold films with initial nanocracks on elastic substrates of p...
Stretchable electronic devices rely on stretchable conductors to form device interconnects and elect...
Stretching metallic conductors to large deformations while maintaining a low and constant electrical...
Crack control strategies have been proven very useful for enhancing the stretchability of metal film...
Stretchable electronics are an emergent class of electronics that can retain their electric function...
Stretchable electronic devices rely on stretchable conductors to form device interconnects and elect...
The current growth of the wearable electronics market has inspired the development of soft and stret...
Stretchable conductors are the basic units of advanced flexible electronic devices, such as skin‐lik...
Flexible electronic devices rely on effective conductors integrated with elastomeric substrates. Thi...
Stretchable electronics technologies have gained a lot of interest for reasons such as user comfort ...
Stretchable electronics promise to extend the application range of conventional electronics by enabl...
Thin metal films on compliant polymer substrates are of major interest for flexible electronic techn...
Wearable electronics allow us to push the boundaries of human interaction with technology; however, ...
© 2020 Elsevier Ltd Pre-straining the elastic substrate is a commonly used strategy to fabricate buc...
NoThis paper presents a novel method to prepare stretchable conductors and pressure sensors based on...