Recently, great stretchability progress has been witnessed in elastic electronics. However, such electronics are costly, toxic, or cannot pattern on a broad range of substrates, which limit their large-scale fabrications and applications. Here, to overcome those limitations, an ink comprising liquid metal particles and desirable polymer solutions is developed. The polymer solutions in our ink can be adjusted to print on different surfaces and avoid toxic organic solvents in most cases. The ink can be sintered by a small strain (∼10%) in room temperature. Using our ink, conductors with high stretchability (380000 S/m at a strain of 1000%) can be printed in low consumption (liquid metal consumption 3.27 mg/cm2), in a large area (bestrew the e...
Printable stretchable devices, which can be used in a wide range of environments, are required for a...
Printing is one of the easy and quick ways to make a stretchable wearable electronics. Conventional ...
Poster to be presented at the 2022 Brumley D. Pritchett Lecture & the IMat Symposium on Materials In...
Recently, great stretchability progress has been witnessed in elastic electronics. However, such ele...
As electronics become more integrated into every aspect of our daily lives, one limiting factor is t...
Printing of stretchable conductors enables the fabrication and rapid prototyping of stretchable elec...
The necessity to place sensors far away from the processing unit in smart clothes or artificial skin...
Summary: Stretchable, biocompatible devices can bridge electronics and biology. However, most stretc...
Conductive and stretchable electrodes that can be printed directly on a stretchable substrate have d...
Inkjet printing is a promising technique for large-scale printed flexible and stretchable electronic...
Electrically conductive inks are the foundations of printed electronics as they allow to print circu...
A bi-phasic ternary Ag-In-Ga ink that demonstrates high electrical conductivity, extreme stretchabil...
As printed electronics is evolving toward applications in biosensing and wearables, the need for nov...
This work tackles the complicated problem of clump formation and entanglement of high aspect ratio c...
With high conductivity and stretchable for large cross-sections, liquid metals such as galinstan are...
Printable stretchable devices, which can be used in a wide range of environments, are required for a...
Printing is one of the easy and quick ways to make a stretchable wearable electronics. Conventional ...
Poster to be presented at the 2022 Brumley D. Pritchett Lecture & the IMat Symposium on Materials In...
Recently, great stretchability progress has been witnessed in elastic electronics. However, such ele...
As electronics become more integrated into every aspect of our daily lives, one limiting factor is t...
Printing of stretchable conductors enables the fabrication and rapid prototyping of stretchable elec...
The necessity to place sensors far away from the processing unit in smart clothes or artificial skin...
Summary: Stretchable, biocompatible devices can bridge electronics and biology. However, most stretc...
Conductive and stretchable electrodes that can be printed directly on a stretchable substrate have d...
Inkjet printing is a promising technique for large-scale printed flexible and stretchable electronic...
Electrically conductive inks are the foundations of printed electronics as they allow to print circu...
A bi-phasic ternary Ag-In-Ga ink that demonstrates high electrical conductivity, extreme stretchabil...
As printed electronics is evolving toward applications in biosensing and wearables, the need for nov...
This work tackles the complicated problem of clump formation and entanglement of high aspect ratio c...
With high conductivity and stretchable for large cross-sections, liquid metals such as galinstan are...
Printable stretchable devices, which can be used in a wide range of environments, are required for a...
Printing is one of the easy and quick ways to make a stretchable wearable electronics. Conventional ...
Poster to be presented at the 2022 Brumley D. Pritchett Lecture & the IMat Symposium on Materials In...