We report here a comparison of electronic transport properties of conducting polymer nanowires synthesized by chemical and electrochemical methods inside nanopores. Electronic transport properties of these nanowires show a power-law behavior (I∝V1+β) at low temperature. Chemically synthesized nanowires exhibit higher values of β and these values increase further with the diameter of nanowires. Zero bias differential conductance of all the nanowires increase with increasing diameter and temperature but the obtained values of chemically synthesized nanowires were always found to be much lower. These results indicate enhancement of electron-electron interactions in chemically synthesized nanowires
International audienceElectrical conductivity, current-voltage (I-V) characteristics, and low-temper...
We investigated electrical charge transport through individual strands of single-crystalline dipenty...
Supramolecular engineering offers opportunities for creating polymer-based materials with tailored c...
International audienceTwo- and four-probe electrical measurements on individual conjugated polymer n...
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 ...
International audienceIn this paper, we focus on current-voltage (I-V) characteristics in several ki...
International audienceIn order to study the electronic properties of conjugated polymer nanowire jun...
In recent years, investigators in industry and academia have increasingly tamed the structural and e...
This thesis describes a series of experiments aimed at understanding the low-temperature electrical ...
We report on the temperature dependent conductivity and current-voltage (I-V) properties of novel po...
We have presented here results of a low temperature transport study of polypyrrole nanowires having ...
Nanowires are widely considered to be key elements in future disruptive electronics and photonics. T...
The goal of this research is to find out the electronic structure and transport property of nanowire...
Examples of long-range electronic conductivity are rare in biological systems. The observation of mi...
International audienceElectrical conductivity, current-voltage (I-V) characteristics, and low-temper...
We investigated electrical charge transport through individual strands of single-crystalline dipenty...
Supramolecular engineering offers opportunities for creating polymer-based materials with tailored c...
International audienceTwo- and four-probe electrical measurements on individual conjugated polymer n...
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 ...
International audienceIn this paper, we focus on current-voltage (I-V) characteristics in several ki...
International audienceIn order to study the electronic properties of conjugated polymer nanowire jun...
In recent years, investigators in industry and academia have increasingly tamed the structural and e...
This thesis describes a series of experiments aimed at understanding the low-temperature electrical ...
We report on the temperature dependent conductivity and current-voltage (I-V) properties of novel po...
We have presented here results of a low temperature transport study of polypyrrole nanowires having ...
Nanowires are widely considered to be key elements in future disruptive electronics and photonics. T...
The goal of this research is to find out the electronic structure and transport property of nanowire...
Examples of long-range electronic conductivity are rare in biological systems. The observation of mi...
International audienceElectrical conductivity, current-voltage (I-V) characteristics, and low-temper...
We investigated electrical charge transport through individual strands of single-crystalline dipenty...
Supramolecular engineering offers opportunities for creating polymer-based materials with tailored c...