In this paper, silver nanoparticles (AgNPs), incorporated in the poly(perfluorosulfonic) acid membrane Nafion 117, were fabricated by chemical reduction of the Ag+-loaded membranes, using HCOH in a basic medium as reducing agent. The AgNP content within the membrane varied proportionally to the concentration of AgNO3 used in the incorporation step of Ag+ in the ion exchange. Information on size and density of the AgNPs within the matrix was obtained by SEM analysis. The size of the AgNPs varied between 10 and 20nm, regardless of the AgNO3 concentration used for their preparation, while AgNPs density was the higher, the greater the AgNO3 concentration in the solution was. Information on the oxidation state of Ag in the AgNPs and their distri...
In this study, silver nanoparticles (AgNPs) were synthesized from tea leaves extract and its antimic...
Proton-conducting membranes are a key component of PEM fuel cells: the properties of these membranes...
Fuel cells are capable to exploit the combustion of hydrogen to convert chemical energy into electri...
In this paper, silver nanoparticles (AgNPs), incorporated in the poly(perfluorosulfonic) acid membra...
The particular chemical structure of Nafion with nanostructured and segregated hydrophilic and hydro...
Silver nanoparticles (Ag nps) in host poly(perfluorosulfonic) acid membrane (Nafion-117) were formed...
Copyright © 2013 Alexandra Revina et al. This is an open access article distributed under the Creati...
Ionomer membranes are promising platforms for the metal nanostructures and provide possibilities for...
Galvanic reactions of Hg(2+), Rh(3+), and AuCl(4)(-) ions with Ag nanoparticles positioned near the ...
Formation of highly stable metal nanostructures in a Nafion® membrane with various aspect ratios has...
The interactions between Hela cells and silver nanoparticles (AgNPs) have been studied by scanning e...
Electrochemical cycling of Ag surfaces under basic conditions has led to the discovery of a new, sim...
Nanometer-sized membranes (thickness of ca 200 nm) backside contacted with a film of poly(3-octylthi...
Nanometer-sized membranes (thickness of ca 200 nm) backside contacted with a film of poly(3-octylthi...
Nafion is a perfluorinated anionic polyelectrolyte. The increasing popularity of nafion for the fabr...
In this study, silver nanoparticles (AgNPs) were synthesized from tea leaves extract and its antimic...
Proton-conducting membranes are a key component of PEM fuel cells: the properties of these membranes...
Fuel cells are capable to exploit the combustion of hydrogen to convert chemical energy into electri...
In this paper, silver nanoparticles (AgNPs), incorporated in the poly(perfluorosulfonic) acid membra...
The particular chemical structure of Nafion with nanostructured and segregated hydrophilic and hydro...
Silver nanoparticles (Ag nps) in host poly(perfluorosulfonic) acid membrane (Nafion-117) were formed...
Copyright © 2013 Alexandra Revina et al. This is an open access article distributed under the Creati...
Ionomer membranes are promising platforms for the metal nanostructures and provide possibilities for...
Galvanic reactions of Hg(2+), Rh(3+), and AuCl(4)(-) ions with Ag nanoparticles positioned near the ...
Formation of highly stable metal nanostructures in a Nafion® membrane with various aspect ratios has...
The interactions between Hela cells and silver nanoparticles (AgNPs) have been studied by scanning e...
Electrochemical cycling of Ag surfaces under basic conditions has led to the discovery of a new, sim...
Nanometer-sized membranes (thickness of ca 200 nm) backside contacted with a film of poly(3-octylthi...
Nanometer-sized membranes (thickness of ca 200 nm) backside contacted with a film of poly(3-octylthi...
Nafion is a perfluorinated anionic polyelectrolyte. The increasing popularity of nafion for the fabr...
In this study, silver nanoparticles (AgNPs) were synthesized from tea leaves extract and its antimic...
Proton-conducting membranes are a key component of PEM fuel cells: the properties of these membranes...
Fuel cells are capable to exploit the combustion of hydrogen to convert chemical energy into electri...