Full advantage of stretchable electronic devices can be taken when utilizing an intrinsically stretchable power source. High-performance stretchable supercapacitors with a simple structure and solid-state operation are good power sources for stretchable electronics. This study suggests a new type of intrinsically stretchable, printable, electroactive ink consisting of 1T-MoS2 and a fluoroelastomer (FE). The active material (1T-MoS2/FE) is made by fluorinating the metallic-phase MoS2 (1T-MoS2) nanosheets with the FE under high-power ultra-sonication. The MoS2 in the 1T-MoS2/FE has unconventional crystal structures in which the stable cubic (1T) and distorted 2H structures were mixed. The printed line of the 1T-MoS2/FE on the porous stretchab...
With the rapid development of Internet-of-Things (IoT), it is estimated that a trillion sensors will...
This paper reports the demonstration of human integrated electronic devices, such as oscillators and...
Wearable and skin electronics benefit from mechanically soft and stretchable materials to conform to...
Full advantage of stretchable electronic devices can be taken when utilizing an intrinsically stretc...
Metallic molybdenum disulfide (MoS2), e.g., 1T phase, is touted as a highly promising material for e...
Flexible and stretchable supercapacitors (FS-SCs) are promising energy storage devices for wearable ...
Although some progress has been made on stretchable supercapacitors, traditional stretchable superca...
Recently, great stretchability progress has been witnessed in elastic electronics. However, such ele...
While several stretchable batteries utilizing either deterministic or random composite architectures...
Two-dimensional molybdenum disulfide (MoS2) nanosheets have emerged as a promising material for tran...
Realization of memristors capable of storing and processing data on flexible substrates is a key ena...
Stretchable electronics are a type of mechanically robust electronics which can be bended, folded, c...
A bi-phasic ternary Ag-In-Ga ink that demonstrates high electrical conductivity, extreme stretchabil...
We fabricated a stretchable micro-supercapacitor array with planar SWCNT electrodes and an ionic liq...
Poster to be presented at the 2022 Brumley D. Pritchett Lecture & the IMat Symposium on Materials In...
With the rapid development of Internet-of-Things (IoT), it is estimated that a trillion sensors will...
This paper reports the demonstration of human integrated electronic devices, such as oscillators and...
Wearable and skin electronics benefit from mechanically soft and stretchable materials to conform to...
Full advantage of stretchable electronic devices can be taken when utilizing an intrinsically stretc...
Metallic molybdenum disulfide (MoS2), e.g., 1T phase, is touted as a highly promising material for e...
Flexible and stretchable supercapacitors (FS-SCs) are promising energy storage devices for wearable ...
Although some progress has been made on stretchable supercapacitors, traditional stretchable superca...
Recently, great stretchability progress has been witnessed in elastic electronics. However, such ele...
While several stretchable batteries utilizing either deterministic or random composite architectures...
Two-dimensional molybdenum disulfide (MoS2) nanosheets have emerged as a promising material for tran...
Realization of memristors capable of storing and processing data on flexible substrates is a key ena...
Stretchable electronics are a type of mechanically robust electronics which can be bended, folded, c...
A bi-phasic ternary Ag-In-Ga ink that demonstrates high electrical conductivity, extreme stretchabil...
We fabricated a stretchable micro-supercapacitor array with planar SWCNT electrodes and an ionic liq...
Poster to be presented at the 2022 Brumley D. Pritchett Lecture & the IMat Symposium on Materials In...
With the rapid development of Internet-of-Things (IoT), it is estimated that a trillion sensors will...
This paper reports the demonstration of human integrated electronic devices, such as oscillators and...
Wearable and skin electronics benefit from mechanically soft and stretchable materials to conform to...