Stretchable large area electronics conform to arbitrarily-shaped 3D surfaces and enables comfortable contact to the human skin and other biological tissue. There are approaches allowing for large area thin films to be stretched by tens of percent without cracking. The approach presented here does not prevent cracking, rather it aims to precisely control the crack positions and their orientation. For this purpose, the polydimethylsiloxane (PDMS) is hardened by exposure to ultraviolet radiation (172 nm) through an exposure mask. Only well-defined patterns are kept untreated. With these soft islands cracks at the hardened surface can be controlled in terms of starting position, direction and end position. This approach is first investigated at...
Polydimethylsiloxane (PDMS) substrates were coated with thin layers of gold varying in thickness bet...
Wrinkle structure effectively suppresses the crack formation in a material under tensile strain, thu...
Controlled deformation of two-dimensional layered materials (2DLMs) can be used to tune their plasmo...
Crack control strategies have been proven very useful for enhancing the stretchability of metal film...
NoThis paper presents a novel method to prepare stretchable conductors and pressure sensors based on...
Stretchable electronic devices rely on stretchable conductors to form device interconnects and elect...
The current modification of polydimethylsiloxane (PDMS) substrates via oxygen plasma treatment cause...
Stretching metallic conductors to large deformations while maintaining a low and constant electrical...
Deformable electronics have diverse applications, such as curved imaging surfaces, sensor skins, and...
Stretchable electronic devices rely on stretchable conductors to form device interconnects and elect...
Elastomer films with three-dimensional features self-organized into coherent and semi-coherent buckl...
We demonstrate a simple, low-cost, and green approach to deposit a microstructured coating on the si...
Poly-di-methylsilixoxane (PDMS) thick films approximately 4 μm in thickness were spin coated onto a ...
Stretchable electronics has attracted much interest recently because of its potential applications i...
We demonstrate a simple, low-cost, and green approach to deposit a microstructured coating on the si...
Polydimethylsiloxane (PDMS) substrates were coated with thin layers of gold varying in thickness bet...
Wrinkle structure effectively suppresses the crack formation in a material under tensile strain, thu...
Controlled deformation of two-dimensional layered materials (2DLMs) can be used to tune their plasmo...
Crack control strategies have been proven very useful for enhancing the stretchability of metal film...
NoThis paper presents a novel method to prepare stretchable conductors and pressure sensors based on...
Stretchable electronic devices rely on stretchable conductors to form device interconnects and elect...
The current modification of polydimethylsiloxane (PDMS) substrates via oxygen plasma treatment cause...
Stretching metallic conductors to large deformations while maintaining a low and constant electrical...
Deformable electronics have diverse applications, such as curved imaging surfaces, sensor skins, and...
Stretchable electronic devices rely on stretchable conductors to form device interconnects and elect...
Elastomer films with three-dimensional features self-organized into coherent and semi-coherent buckl...
We demonstrate a simple, low-cost, and green approach to deposit a microstructured coating on the si...
Poly-di-methylsilixoxane (PDMS) thick films approximately 4 μm in thickness were spin coated onto a ...
Stretchable electronics has attracted much interest recently because of its potential applications i...
We demonstrate a simple, low-cost, and green approach to deposit a microstructured coating on the si...
Polydimethylsiloxane (PDMS) substrates were coated with thin layers of gold varying in thickness bet...
Wrinkle structure effectively suppresses the crack formation in a material under tensile strain, thu...
Controlled deformation of two-dimensional layered materials (2DLMs) can be used to tune their plasmo...