The coupling between mechanical flexibility and electronic performance is evaluated for thin films of metallic and semiconducting single-wall carbon nanotubes (SWCNTs) deposited on compliant supports. Percolated networks of type-purified SWCNTs are assembled as thin conducting coatings on elastic polymer substrates, and the sheet resistance is measured as a function of compression and cyclic strain through impedance spectroscopy. The wrinkling topography, microstructure and transparency of the films are independently characterized using optical microscopy, electron microscopy, and optical absorption spectroscopy. Thin films made from metallic SWCNTs show better durability as flexible transparent conductive coatings, which we attribute to a ...
Abstract — Transparent and electrically conductive coatings and films have a variety of fast-growing...
International audienceConducting and transparent interfacial thin films have been prepared from doub...
Carbon nanotube (CNT)-doped transparent conductive films (TCFs) is an encouraging option toward gene...
The coupling between mechanical flexibility and electronic performance is evaluated for thin films o...
Single-walled carbon nanotubes (SWCNTs) have attracted significant interest in many fields due to th...
Single-walled carbon nanotubes (SWCNTs) have attracted significant interest in many fields due to t...
Single-wall carbon nanotube (SWCNT) films show significant promise for transparent electronics appli...
Dense, aligned single-walled carbon nanotubes (SWCNTs) were obtained by nitric acid treatment and th...
Optically transparent, conductive, and mechanically flexible epoxy thin films are produced in the pr...
ii Discovering scalable routes to fabricate large scale electronic devices on flexible substrates ha...
We prepare thin single-walled carbon nanotube networks on a transparent and flexible substrate with ...
Single-walled carbon nanotubes were purified by conventional method of thermal oxidation followed by...
A variety of technological applications depend on transparent conducting films, and carbon nanotubes...
Discovering scalable routes to fabricate large scale electronic devices on flexible substrates has b...
The fabrication of flexible transparent conducting films (TCFs) is important for the development of ...
Abstract — Transparent and electrically conductive coatings and films have a variety of fast-growing...
International audienceConducting and transparent interfacial thin films have been prepared from doub...
Carbon nanotube (CNT)-doped transparent conductive films (TCFs) is an encouraging option toward gene...
The coupling between mechanical flexibility and electronic performance is evaluated for thin films o...
Single-walled carbon nanotubes (SWCNTs) have attracted significant interest in many fields due to th...
Single-walled carbon nanotubes (SWCNTs) have attracted significant interest in many fields due to t...
Single-wall carbon nanotube (SWCNT) films show significant promise for transparent electronics appli...
Dense, aligned single-walled carbon nanotubes (SWCNTs) were obtained by nitric acid treatment and th...
Optically transparent, conductive, and mechanically flexible epoxy thin films are produced in the pr...
ii Discovering scalable routes to fabricate large scale electronic devices on flexible substrates ha...
We prepare thin single-walled carbon nanotube networks on a transparent and flexible substrate with ...
Single-walled carbon nanotubes were purified by conventional method of thermal oxidation followed by...
A variety of technological applications depend on transparent conducting films, and carbon nanotubes...
Discovering scalable routes to fabricate large scale electronic devices on flexible substrates has b...
The fabrication of flexible transparent conducting films (TCFs) is important for the development of ...
Abstract — Transparent and electrically conductive coatings and films have a variety of fast-growing...
International audienceConducting and transparent interfacial thin films have been prepared from doub...
Carbon nanotube (CNT)-doped transparent conductive films (TCFs) is an encouraging option toward gene...