Novel, optically responsive devices with a host of potential applications have been demonstrated by coupling carbon nanomaterials with photochromic molecules. For light-induced conductance switching in particular, we have recently shown that carbon nanotube-polymer nanocomposites containing azobenzene are very attractive and provide stable and non-degradable changes in conductivity over time at standard laboratory conditions. In these composites, the photoswitching mechanisms are based on light-induced changes in electronic properties and related to the Pool-Frenkel conduction mechanism. However, no link between conductivity switching and the molecular motion of azobenzene chromophores could be found due to application of high elastic modul...
A bilayer composite of single walled carbon nanotubes (SWNTs) deposited onto Nafion exhibits substan...
UV-induced switching from p- to n-type character is demonstrated during deposition of carbon-nanotub...
Multifunctional polymer nanocomposites that simultaneously possess high modulus and strength, high t...
Novel, optically responsive devices with a host of potential applications have been demonstrated by ...
Tuning the microstructure, conductance, band gap of a single molecule with an external stimuli such ...
We report on reversible light-controlled conductance switching in devices consisting of multiwalled ...
Photochromic molecules are part of a large class of materials in which light stimulus not only induc...
Photochromic molecules are part of a large class of materials in which light stimulus not only induc...
The ability to control the conductance of single molecules will have a major impact in nanoscale ele...
The optical and electrical properties of the conducting polymer poly(3-hexylthiophene) and single wa...
Self-assembled functionalized nano particles are at the focus of a number of potential applications,...
We review the current state of the polymer-carbon nanotube composites field. The article first cover...
Carbon nanotubes (CNT) have been in the forefront of nanotechnology research since their discovery i...
Azobenzene-containing crosslinked liquid crystalline polymer (CLCP) exhibits macroscopic deformation...
Photomechanical materials powered by light-induced changes in crystalline lattices offer promise for...
A bilayer composite of single walled carbon nanotubes (SWNTs) deposited onto Nafion exhibits substan...
UV-induced switching from p- to n-type character is demonstrated during deposition of carbon-nanotub...
Multifunctional polymer nanocomposites that simultaneously possess high modulus and strength, high t...
Novel, optically responsive devices with a host of potential applications have been demonstrated by ...
Tuning the microstructure, conductance, band gap of a single molecule with an external stimuli such ...
We report on reversible light-controlled conductance switching in devices consisting of multiwalled ...
Photochromic molecules are part of a large class of materials in which light stimulus not only induc...
Photochromic molecules are part of a large class of materials in which light stimulus not only induc...
The ability to control the conductance of single molecules will have a major impact in nanoscale ele...
The optical and electrical properties of the conducting polymer poly(3-hexylthiophene) and single wa...
Self-assembled functionalized nano particles are at the focus of a number of potential applications,...
We review the current state of the polymer-carbon nanotube composites field. The article first cover...
Carbon nanotubes (CNT) have been in the forefront of nanotechnology research since their discovery i...
Azobenzene-containing crosslinked liquid crystalline polymer (CLCP) exhibits macroscopic deformation...
Photomechanical materials powered by light-induced changes in crystalline lattices offer promise for...
A bilayer composite of single walled carbon nanotubes (SWNTs) deposited onto Nafion exhibits substan...
UV-induced switching from p- to n-type character is demonstrated during deposition of carbon-nanotub...
Multifunctional polymer nanocomposites that simultaneously possess high modulus and strength, high t...