Electrical DC conductivity, magnetic susceptibility, and EPR measurements are used to investigate the electron localization behavior of polyaniline as a function of the dopant type using seven sulfonic acid based doping acids. In spite of differences in the magnitude and the temperature dependences of DC conductivity and magnetic susceptibility data, the experiments reveal a localization length of approximately 30 Å for all the samples. We conclude that this result is essentially due to disorder in the basic morphological structure of a polymer that seems to be determined, among other factors, by the nature of the monomeric units comprising the polymer chains
Characteristic paramagnetism induced by organic acids and solvents was observed for conducting polya...
The polyaniline were prepared by using different inorganic and organic acids via oxidative polymeriz...
Polyaniline highly doped with acrylamido-2-methyl-1-propanesulphonic (PANI-AMPSA) and camphorsulfoni...
The electronic behavior of chemically synthesized polyaniline depends on the amount of disorder—whet...
260-263Electrical dc conductivity, magnetic susceptibility and electron spin resonance studies are ...
First results of a 3-cm (9.7 GHz) and 2-mm (140 GHz) waveband EPR study of the magnetic and electron...
A detailed comparative study of electron paramagnetic resonance (EPR) in conjunction with d.c. elect...
Charge transport and magnetic properties of films of polyaniline (PAN) doped with 10-camphorsulfonic...
Electron spin resonance and DC electrical investigations on the effect of chlorine doping on emerald...
In doped polyaniline (PANI), the charge transport properties are determined by mesoscopic morphology...
Polyaniline (PANI) exhibits a dc conductivity σ ≈ 10−1 S/cm when it is doped with poly(styrenesulfon...
X-band electron spin resonance (ESR) of polyaniline (PANI) doped with 2-acrylamido-2-methyl-1-propan...
X-band electron spin resonance (ESR) of polyaniline (PANI) doped with 2-acrylamido-2-methyl-1-propan...
This thesis presents the results of a comprehensive study on the transport and optical properties of...
Samples of doped polyaniline (emeraldine salt) were prepared with protonic acid dopants, namely, hyd...
Characteristic paramagnetism induced by organic acids and solvents was observed for conducting polya...
The polyaniline were prepared by using different inorganic and organic acids via oxidative polymeriz...
Polyaniline highly doped with acrylamido-2-methyl-1-propanesulphonic (PANI-AMPSA) and camphorsulfoni...
The electronic behavior of chemically synthesized polyaniline depends on the amount of disorder—whet...
260-263Electrical dc conductivity, magnetic susceptibility and electron spin resonance studies are ...
First results of a 3-cm (9.7 GHz) and 2-mm (140 GHz) waveband EPR study of the magnetic and electron...
A detailed comparative study of electron paramagnetic resonance (EPR) in conjunction with d.c. elect...
Charge transport and magnetic properties of films of polyaniline (PAN) doped with 10-camphorsulfonic...
Electron spin resonance and DC electrical investigations on the effect of chlorine doping on emerald...
In doped polyaniline (PANI), the charge transport properties are determined by mesoscopic morphology...
Polyaniline (PANI) exhibits a dc conductivity σ ≈ 10−1 S/cm when it is doped with poly(styrenesulfon...
X-band electron spin resonance (ESR) of polyaniline (PANI) doped with 2-acrylamido-2-methyl-1-propan...
X-band electron spin resonance (ESR) of polyaniline (PANI) doped with 2-acrylamido-2-methyl-1-propan...
This thesis presents the results of a comprehensive study on the transport and optical properties of...
Samples of doped polyaniline (emeraldine salt) were prepared with protonic acid dopants, namely, hyd...
Characteristic paramagnetism induced by organic acids and solvents was observed for conducting polya...
The polyaniline were prepared by using different inorganic and organic acids via oxidative polymeriz...
Polyaniline highly doped with acrylamido-2-methyl-1-propanesulphonic (PANI-AMPSA) and camphorsulfoni...