In this thesis we have studied experimentally electronic transport in mesoscopic hybrid polypyrrole-gold devices and single multiwalled carbon nanotube devices. A novel fabrication technique for mesoscopic conducting hybrid polymer-gold films has been developed. The hybrid polymer-gold films have been fabricated by electrochemical deposition of polypyrrole on a gold nanoisland layer. Temperature dependence of conductance show that the dominant transport mechanism in the polypyrrole-gold films is variable range hopping in the temperature range from 20 K to 300 K. At very low temperature strong nonlinearities in the field dependent conductance are observed. The field dependence follows a phenomenological model that is different from...
The assemblies (films) of carbon nanotubes (CNTs) possess very stable, reproducible, and extraordina...
We report here on the investigations of the electrical transport property for single pure or Au-dope...
The strikingly different charge transport behaviours in nanocomposites of multiwall carbon nanotubes...
We have studied charge transport in nanometer scale films of polypyrrole (PPy) that were grown elect...
We present temperature dependent electrical transport measurements of peptide nanotube devices coate...
We present temperature dependent electrical transport measurements of peptide nanotube devices coate...
We present here the synthesis and structural characterization of hybrid Au-polypyrrole-Au and Pt-pol...
The structure, morphol. and charge transport properties of metallic conducting polymers and carbon n...
A comparative investigation of charge transport properties is presented, for polymeric [poly(3,4-eth...
International audienceThe assemblies (films) of carbon nanotubes (CNTs) possess very stable, reprodu...
Abstract In this paper, we focus on current–voltage (I–V) characteristics in several kin...
International audienceWe report the current-voltage (I-V) characteristics of individual polypyrrole ...
Multiwalled carbon nanotubes are shown to be ballistic conductors at room temperature, with mean fre...
Electrical transport properties of individual multiwalled carbon nanotubes (MWCNTs) with diameters g...
The assemblies (films) of carbon nanotubes (CNTs) possess very stable, reproducible, and extraordina...
The assemblies (films) of carbon nanotubes (CNTs) possess very stable, reproducible, and extraordina...
We report here on the investigations of the electrical transport property for single pure or Au-dope...
The strikingly different charge transport behaviours in nanocomposites of multiwall carbon nanotubes...
We have studied charge transport in nanometer scale films of polypyrrole (PPy) that were grown elect...
We present temperature dependent electrical transport measurements of peptide nanotube devices coate...
We present temperature dependent electrical transport measurements of peptide nanotube devices coate...
We present here the synthesis and structural characterization of hybrid Au-polypyrrole-Au and Pt-pol...
The structure, morphol. and charge transport properties of metallic conducting polymers and carbon n...
A comparative investigation of charge transport properties is presented, for polymeric [poly(3,4-eth...
International audienceThe assemblies (films) of carbon nanotubes (CNTs) possess very stable, reprodu...
Abstract In this paper, we focus on current–voltage (I–V) characteristics in several kin...
International audienceWe report the current-voltage (I-V) characteristics of individual polypyrrole ...
Multiwalled carbon nanotubes are shown to be ballistic conductors at room temperature, with mean fre...
Electrical transport properties of individual multiwalled carbon nanotubes (MWCNTs) with diameters g...
The assemblies (films) of carbon nanotubes (CNTs) possess very stable, reproducible, and extraordina...
The assemblies (films) of carbon nanotubes (CNTs) possess very stable, reproducible, and extraordina...
We report here on the investigations of the electrical transport property for single pure or Au-dope...
The strikingly different charge transport behaviours in nanocomposites of multiwall carbon nanotubes...