New hybrid inorganic-organic proton conducting membranes containing a ZrTa nanofiller dispersed in a Nafion matrix are described. The ZrTa nanofiller exhibits a "core-shell" morphology, where the harder ZrO2 forms the "core", which is covered by a "shell" of the softer Ta2O5. The hybrid membranes are thermally stable up to 170°C. Interactions between the polymer matrix and the nanofiller increase the thermal stability of both the -SO3H groups and the fluorocarbon polymer backbone. In comparison with Nafion, the hybrid membranes have a lower water uptake (W.U.) that depends on the concentration of nanofiller. The residual water, which is approximately 4 wt%, is likely located at the Nafion-nanofiller interface. Infrared results indicate that...
New hybrid inorganic-organic nanocomposite proton conducting membranes based on Nafion, SiO2 and tri...
Novel Nafion composite proton exchange membranes are prepared using mesoporous MCM-41 silica nanosph...
Electrochemical devices for the conversion of chemical energy into electrical power, such as proton ...
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...
The current state-of-the-art proton-conducting membranes for application in fuel cells and electroly...
Hybrid inorganic-organic proton-conducting membranes are prepared by a standard solvent casting proc...
This work reports the preparation, characterization and test in a single fuel cell of two families o...
The thermal, mechanical and electric properties of hybrid membranes based on Nafion that contain a ...
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...
Two classes of hybrid inorganic\u2013organic proton-conducting membranes consisting of Nafion and ei...
A proton transport model is proposed to describe proton diffusion in Nafion/[Formula] nanocomposite ...
The large-scale development of polymer electrolyte membrane fuel cells (PMFCs) is partly set back b...
In order to increase the stability of Nafion conductivity at temperatures higher than 100 degrees C,...
New hybrid inorganic-organic nanocomposite proton conducting membranes based on Nafion, SiO2 and tri...
Novel Nafion composite proton exchange membranes are prepared using mesoporous MCM-41 silica nanosph...
Electrochemical devices for the conversion of chemical energy into electrical power, such as proton ...
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...
The current state-of-the-art proton-conducting membranes for application in fuel cells and electroly...
Hybrid inorganic-organic proton-conducting membranes are prepared by a standard solvent casting proc...
This work reports the preparation, characterization and test in a single fuel cell of two families o...
The thermal, mechanical and electric properties of hybrid membranes based on Nafion that contain a ...
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...
Two classes of hybrid inorganic\u2013organic proton-conducting membranes consisting of Nafion and ei...
A proton transport model is proposed to describe proton diffusion in Nafion/[Formula] nanocomposite ...
The large-scale development of polymer electrolyte membrane fuel cells (PMFCs) is partly set back b...
In order to increase the stability of Nafion conductivity at temperatures higher than 100 degrees C,...
New hybrid inorganic-organic nanocomposite proton conducting membranes based on Nafion, SiO2 and tri...
Novel Nafion composite proton exchange membranes are prepared using mesoporous MCM-41 silica nanosph...
Electrochemical devices for the conversion of chemical energy into electrical power, such as proton ...