Highly flexible and deformable electrically conductive materials are vital for the emerging field of wearable electronics. To address the challenge of flexible materials with a relatively high electrical conductivity and a high elastic limit, we report a new and facile method to prepare porous polydimethylsiloxane/carbon nanofiber composites (denoted by p-PDMS/CNF). This method involves using sugar particles coated with carbon nanofibers (CNFs) as the templates. The resulting three-dimensional porous nanocomposites, with the CNFs embedded in the PDMS pore walls, exhibit a greatly increased failure strain (up to ∼94%) compared to that of the solid, neat PDMS (∼48%). The piezoresistive response observed under cyclic tension indicates that the...
YesIn this work, a compression-induced percolation threshold was found when the thickness of polydim...
This paper reports on the fabrication of carbon nanotube (CNT) composites based on poly-dimethylsilo...
Flexible strain sensors are fundamental devices for application in human body monitoring in areas ra...
Highly flexible and deformable electrically conductive materials are vital for the emerging field of...
Highly flexible and deformable electrically conductive materials are vital for the emerging field of...
Simultaneously achieving high piezoresistive sensitivity, stretchability, and good electrical conduc...
Presented at the 5th Annual Undergraduate Research Spring Symposium, March 16, 2010 in the Ballroom ...
Here, we report highly strain-tolerant and sensitive strain sensors based on carbon nanostructures (...
Polymeric materials have been replacing other materials in various applications, from structural to ...
Strain sensors capable of operating in high strain conditions remain a technical challenge. In parti...
Conductive nanocomposites have emerged as significant smart engineered materials for realizing flexi...
Electrically conductive polymer nanocomposites have been the subject of intense research due to thei...
This paper presents a study into the electrical conductivity of multi-wall carbon nanotube-polydimet...
A flexible strain sensor with excellent mechanical and electrical properties was fabricated by depos...
Abstract: polymeric materials have been replacing other materials in various applications, from stru...
YesIn this work, a compression-induced percolation threshold was found when the thickness of polydim...
This paper reports on the fabrication of carbon nanotube (CNT) composites based on poly-dimethylsilo...
Flexible strain sensors are fundamental devices for application in human body monitoring in areas ra...
Highly flexible and deformable electrically conductive materials are vital for the emerging field of...
Highly flexible and deformable electrically conductive materials are vital for the emerging field of...
Simultaneously achieving high piezoresistive sensitivity, stretchability, and good electrical conduc...
Presented at the 5th Annual Undergraduate Research Spring Symposium, March 16, 2010 in the Ballroom ...
Here, we report highly strain-tolerant and sensitive strain sensors based on carbon nanostructures (...
Polymeric materials have been replacing other materials in various applications, from structural to ...
Strain sensors capable of operating in high strain conditions remain a technical challenge. In parti...
Conductive nanocomposites have emerged as significant smart engineered materials for realizing flexi...
Electrically conductive polymer nanocomposites have been the subject of intense research due to thei...
This paper presents a study into the electrical conductivity of multi-wall carbon nanotube-polydimet...
A flexible strain sensor with excellent mechanical and electrical properties was fabricated by depos...
Abstract: polymeric materials have been replacing other materials in various applications, from stru...
YesIn this work, a compression-induced percolation threshold was found when the thickness of polydim...
This paper reports on the fabrication of carbon nanotube (CNT) composites based on poly-dimethylsilo...
Flexible strain sensors are fundamental devices for application in human body monitoring in areas ra...