The modification of Nafion membranes with polyaniline (PAni) has been studied as an alternative for reducing methanol crossover in direct methanol fuel cells (DMFC). The modification has been performed by directly polymerizing the PAni following two different routes: immersion (Naf-S-Y, where S mean surface and Y the number of hours exposition) and crossover (Naf-C-Y, where C means crossover). The former consist of exposing the membranes to a reactive solution containing the aniline, oxidant and catalyst; while in the latter the aniline and a solution with the oxidant and the catalyst are in different chambers separated by the membrane, thus forcing them to react inside it. The effect of the modification mechanism and the reaction times has...
One major goal of this research was to increase the fuel efficiency and cell performance of direct m...
Commercial Nafion 115 membranes were successfully modified by in situ acid-catalyzed polymerization ...
Commercially available proton exchange membranes such as Nafion do not meet the requirements for hig...
The modification of Nafion membranes with polyaniline (PAni) has been studied as an alternative for ...
Commercial Nafion® 117 membranes were successfully modified by in-situ reactions (sol-gel of TEOS an...
This work investigates the characterization and performance of polyaniline and silica modified Natio...
This investigation of the characteristics of direct methanol fuel cells (DMFC) has led to significan...
Direct Methanol Fuel Cells (DMFCs) operate by electro-oxidation of methanol and the transport of the...
This work investigates the characterization and performance of polyaniline and silica modified Nafio...
This work has been focused on the characterization of the methanol permeability and fuel cell perfor...
Direct methanol fuel cells (DMFCs) using a proton exchange membrane as electrolyte is an attractive ...
The Nafion®117 membrane was modified chemically, using a conducting polymer pyrrole. The oxidants fe...
Layer-by-layer (LbL) self-assembly of polyelectrolyte bilayers on the methanol permeability and prot...
Commercial Nafion (R)-115 (trademark registered to DuPont) membranes were modified by in situ polyme...
Commercial Nafion ®-115 (trademark registered to DuPont) membranes were modified by in situ polymeri...
One major goal of this research was to increase the fuel efficiency and cell performance of direct m...
Commercial Nafion 115 membranes were successfully modified by in situ acid-catalyzed polymerization ...
Commercially available proton exchange membranes such as Nafion do not meet the requirements for hig...
The modification of Nafion membranes with polyaniline (PAni) has been studied as an alternative for ...
Commercial Nafion® 117 membranes were successfully modified by in-situ reactions (sol-gel of TEOS an...
This work investigates the characterization and performance of polyaniline and silica modified Natio...
This investigation of the characteristics of direct methanol fuel cells (DMFC) has led to significan...
Direct Methanol Fuel Cells (DMFCs) operate by electro-oxidation of methanol and the transport of the...
This work investigates the characterization and performance of polyaniline and silica modified Nafio...
This work has been focused on the characterization of the methanol permeability and fuel cell perfor...
Direct methanol fuel cells (DMFCs) using a proton exchange membrane as electrolyte is an attractive ...
The Nafion®117 membrane was modified chemically, using a conducting polymer pyrrole. The oxidants fe...
Layer-by-layer (LbL) self-assembly of polyelectrolyte bilayers on the methanol permeability and prot...
Commercial Nafion (R)-115 (trademark registered to DuPont) membranes were modified by in situ polyme...
Commercial Nafion ®-115 (trademark registered to DuPont) membranes were modified by in situ polymeri...
One major goal of this research was to increase the fuel efficiency and cell performance of direct m...
Commercial Nafion 115 membranes were successfully modified by in situ acid-catalyzed polymerization ...
Commercially available proton exchange membranes such as Nafion do not meet the requirements for hig...