AbstractAn improved electrode geometry is proposed to study thin ion conducting films by impedance spectroscopy. It is shown that long, thin, and closely spaced electrodes arranged interdigitally allow a separation of grain and grain boundary effects also in very thin films. This separation is shown to be successful for yttria stabilized zirconia (YSZ) layers thinner than 20nm. In a series of experiments it is demonstrated that the extracted parameters correspond to the YSZ grain boundary and grain bulk resistances or to grain boundary and substrate capacitances. Results also show that our YSZ films produced by pulsed-laser deposition (PLD) on sapphire substrates exhibit a bulk conductivity which is very close to that of macroscopic YSZ sam...
This paper demonstrates the feasibility of high-throughput investigation of ionic conductivity in ox...
Yttria-stabilized zirconia (YSZ) is the most common solid electrolyte material used e.g. in ceramic ...
Cubic yttria-stabilized zirconia (YSZ) films with yttria concentrations of 8.7, 9.9, and 11 mol% hav...
AbstractAn improved electrode geometry is proposed to study thin ion conducting films by impedance s...
AbstractSeparating grain and grain boundary impedance contributions of ion conducting thin films is ...
AbstractSeparating grain and grain boundary impedance contributions of ion conducting thin films is ...
In recent years, interface engineering of solid electrolytes has been explored to increase their ion...
We report on complex admittance measurements on ZrO_(2):Y_(2)O_(3) (YSZ) thin films in the parallel ...
A major challenge in the application of nanostructured electrolytes in solid oxide electrochemical c...
Yttria stabilized zirconia (YSZ) is a popular solid oxide electrolyte material for solid oxide fuel ...
AbstractModel-type sputter deposited platinum microelectrodes with different grain sizes were invest...
Grain boundary conductivities are determined by complex impedance measurements (1–106 Hz) on high-pu...
The influence of the grain boundaries on ionic conductivity of yttrium stabilized zirconia (YSZ) was...
Here we show impedance spectroscopy measurements on a bicrystal of the ionically conducting yttria s...
This paper demonstrates the feasibility of high-throughput investigation of ionic conductivity in ox...
This paper demonstrates the feasibility of high-throughput investigation of ionic conductivity in ox...
Yttria-stabilized zirconia (YSZ) is the most common solid electrolyte material used e.g. in ceramic ...
Cubic yttria-stabilized zirconia (YSZ) films with yttria concentrations of 8.7, 9.9, and 11 mol% hav...
AbstractAn improved electrode geometry is proposed to study thin ion conducting films by impedance s...
AbstractSeparating grain and grain boundary impedance contributions of ion conducting thin films is ...
AbstractSeparating grain and grain boundary impedance contributions of ion conducting thin films is ...
In recent years, interface engineering of solid electrolytes has been explored to increase their ion...
We report on complex admittance measurements on ZrO_(2):Y_(2)O_(3) (YSZ) thin films in the parallel ...
A major challenge in the application of nanostructured electrolytes in solid oxide electrochemical c...
Yttria stabilized zirconia (YSZ) is a popular solid oxide electrolyte material for solid oxide fuel ...
AbstractModel-type sputter deposited platinum microelectrodes with different grain sizes were invest...
Grain boundary conductivities are determined by complex impedance measurements (1–106 Hz) on high-pu...
The influence of the grain boundaries on ionic conductivity of yttrium stabilized zirconia (YSZ) was...
Here we show impedance spectroscopy measurements on a bicrystal of the ionically conducting yttria s...
This paper demonstrates the feasibility of high-throughput investigation of ionic conductivity in ox...
This paper demonstrates the feasibility of high-throughput investigation of ionic conductivity in ox...
Yttria-stabilized zirconia (YSZ) is the most common solid electrolyte material used e.g. in ceramic ...
Cubic yttria-stabilized zirconia (YSZ) films with yttria concentrations of 8.7, 9.9, and 11 mol% hav...