The thermal, mechanical and electric properties of hybrid membranes based on Nafion that contain a [(ZrO2)∙(Ta2O5)0.119] “core-shell” nanofiller are elucidated. DSC investigations reveal the presence of four endothermic transitions between 50 and 300°C. The DMA results indicate improved mechanical stability of the hybrid materials. The DSC and DMA results are consistent with our previous suggestion of dynamic R-SO3H∙∙∙[ZrTa] cross-links in the material. These increase the thermal stability of the –SO3H groups and the temperature of thermal relaxation events occurring in hydrophobic domains of Nafion. The broadband electric spectroscopic analysis reveals two electric relaxations associated with the materials’ interfacial (σIP) and bulk pro...
In this report is described the preparation of six nanocomposite membranes of formula {Nafion/[(ZrO2...
In this report is described the dielectric characteriation by Broadband Dielectric Spectroscopy (BDS...
This report describes a study of the effect of SiO2 nanopowders on the mechanism of ionic motion and...
Two classes of hybrid inorganic–organic proton-conducting membranes consisting of Nafion and either ...
New hybrid inorganic-organic proton conducting membranes containing a ZrTa nanofiller dispersed in a...
New hybrid inorganic-organic proton conducting membranes containing a ZrTa nanofiller dispersed in a...
In this report, we are presenting studies of the effect of MxOy nanopowders on the thermal, mechani...
The current state-of-the-art proton-conducting membranes for application in fuel cells and electroly...
An overview of the studies carried out on Nafion®-based nanocomposite membranes for application in p...
In order to increase the stability of Nafion conductivity at temperatures higher than 100 degrees C,...
Hybrid inorganic-organic proton-conducting membranes are prepared by a standard solvent casting proc...
In this report, a new nanofiller consisting of silica "cores" bearing fluoroalkyl surface functional...
This work reports the preparation, characterization and test in a single fuel cell of two families o...
A proton transport model is proposed to describe proton diffusion in Nafion/ZrO2/SO42− nanocomposit...
This work reports the preparation, characterization and test in a single fuel cell of two families o...
In this report is described the preparation of six nanocomposite membranes of formula {Nafion/[(ZrO2...
In this report is described the dielectric characteriation by Broadband Dielectric Spectroscopy (BDS...
This report describes a study of the effect of SiO2 nanopowders on the mechanism of ionic motion and...
Two classes of hybrid inorganic–organic proton-conducting membranes consisting of Nafion and either ...
New hybrid inorganic-organic proton conducting membranes containing a ZrTa nanofiller dispersed in a...
New hybrid inorganic-organic proton conducting membranes containing a ZrTa nanofiller dispersed in a...
In this report, we are presenting studies of the effect of MxOy nanopowders on the thermal, mechani...
The current state-of-the-art proton-conducting membranes for application in fuel cells and electroly...
An overview of the studies carried out on Nafion®-based nanocomposite membranes for application in p...
In order to increase the stability of Nafion conductivity at temperatures higher than 100 degrees C,...
Hybrid inorganic-organic proton-conducting membranes are prepared by a standard solvent casting proc...
In this report, a new nanofiller consisting of silica "cores" bearing fluoroalkyl surface functional...
This work reports the preparation, characterization and test in a single fuel cell of two families o...
A proton transport model is proposed to describe proton diffusion in Nafion/ZrO2/SO42− nanocomposit...
This work reports the preparation, characterization and test in a single fuel cell of two families o...
In this report is described the preparation of six nanocomposite membranes of formula {Nafion/[(ZrO2...
In this report is described the dielectric characteriation by Broadband Dielectric Spectroscopy (BDS...
This report describes a study of the effect of SiO2 nanopowders on the mechanism of ionic motion and...