A systematic study by reversible and hysteretic electrochemical strain microscopy (ESM) in samples of cerium oxide with different Sm content and in several working conditions allows disclosing the microscopic mechanism underlying the difference in electrical conduction mechanism and related surface activity, such as water adsorption and dissociation with subsequent proton liberation. We have measured the behavior of the reversible hysteresis loops by changing temperature and humidity, both in standard ESM configuration and using the first-order reversal curve method. The measurements have been performed in much smaller temperature ranges with respect to alternative measuring techniques. Complementing our study with hard X-ray photoemission ...
[[abstract]]c2002 Springer - The conductivity, C, of a samaria-doped ceria electrolyte is studied as...
The impact of hydration on the transport properties of microcrystalline Sm_(0.15)Ce_(0.85)O_(1.925) ...
Heavily acceptor doped ceria is a material of great relevance for applications in solid oxide fuel c...
A systematic study by reversible and hysteretic electrochemical strain microscopy (ESM) in samples o...
Samaria-doped ceria (SDC) thin films are particularly important for energy and electronic applicatio...
Water adsorption, splitting, and proton liberation were investigated on Sm0.1Ce0.9O2-δ thin films ...
Variable temperature electrochemical strain microscopy has been used to study the electrochemical ac...
Samaria-doped ceria (SDC) thin films are particularly important for energy and electronic applicatio...
Solid oxide photoelectrochemical cells (SOPECs) with inorganic ion-conducting electrolytes provide a...
The structural, microstructural, Raman and ionic conductivity properties of (Gd,Sm)-doped ceria were...
The role of trivalent rare-earth dopants on the cerium oxidation state has been systematically studi...
The role of trivalent rare-earth dopants on the cerium oxidation state has been systematically studi...
The role of trivalent rare-earth dopants on the cerium oxidation state has been systematically studi...
[[abstract]]c2002 Springer - The conductivity, C, of a samaria-doped ceria electrolyte is studied as...
The impact of hydration on the transport properties of microcrystalline Sm_(0.15)Ce_(0.85)O_(1.925) ...
Heavily acceptor doped ceria is a material of great relevance for applications in solid oxide fuel c...
A systematic study by reversible and hysteretic electrochemical strain microscopy (ESM) in samples o...
Samaria-doped ceria (SDC) thin films are particularly important for energy and electronic applicatio...
Water adsorption, splitting, and proton liberation were investigated on Sm0.1Ce0.9O2-δ thin films ...
Variable temperature electrochemical strain microscopy has been used to study the electrochemical ac...
Samaria-doped ceria (SDC) thin films are particularly important for energy and electronic applicatio...
Solid oxide photoelectrochemical cells (SOPECs) with inorganic ion-conducting electrolytes provide a...
The structural, microstructural, Raman and ionic conductivity properties of (Gd,Sm)-doped ceria were...
The role of trivalent rare-earth dopants on the cerium oxidation state has been systematically studi...
The role of trivalent rare-earth dopants on the cerium oxidation state has been systematically studi...
The role of trivalent rare-earth dopants on the cerium oxidation state has been systematically studi...
[[abstract]]c2002 Springer - The conductivity, C, of a samaria-doped ceria electrolyte is studied as...
The impact of hydration on the transport properties of microcrystalline Sm_(0.15)Ce_(0.85)O_(1.925) ...
Heavily acceptor doped ceria is a material of great relevance for applications in solid oxide fuel c...