Mixed ionic-electronic conducting (MIEC) ceramics as oxygen transport membranes (OTMs) can provide high oxygen permeation rates at comparably low energy demands. For this purpose, Ba?.?Sr?.?Co?.?Fe?.?O??? (BSCF) shows the best performance under ideal operating conditions. Thermal and chemical stability investigations, electrical behavior ?(T,pO?,t), and oxygen exchange parameter extraction by means of electrical conductivity relaxation resulted in a far better understanding of the BSCF system
Mixed-conducting oxides are used in many applications, including fuel cells, gas separation membrane...
Mixed-conducting oxides are attracting increased attention because of their potential uses in high-t...
Solid mixed-conducting electrolytes in the series La{sub l-x}A{sub x}Co{sub l-y}Fe{sub y}O{sub 3-{de...
Mixed ionic-electronic conducting (MIEC) ceramics as oxygen transport membranes (OTMs) can provide h...
Oxygen transport membranes (OTMs) represent a promising alternative for the extraction of oxygen com...
Pure oxygen is an important raw material with many important applications. The production of oxygen ...
Pure oxygen is an important raw material with many important applications. The production of oxygen ...
Although Nernst observed ionic conduction of zirconia-yttria solutions in 1899, the field of oxygen ...
Mixed ionic-electronic conducting ceramic membrane-based oxygen separation technology attracts great...
© 2018 Elsevier B.V. Pure oxygen is an important raw material with many important applications. The ...
Ba$_{0,5}$Sr$_{0,5}$Co$_{0,8}$Fe$_{0,2}$O$_{3-?}$ (BSCF) is the most promising material für energy e...
Mixed-conducting oxides have been used in many applications, including fuel cells, gas-separation me...
Ba0.5Sr0.5Co0.8Fe0.2O3-delta (BSCF), a mixed oxygen ionic and electronic conducting ceramic derived ...
Mixed-conducting oxides have been used in many applications, including fuel cells, gas separation me...
Among novel technologies under development as cost-effective alternatives to conventional oxygen pro...
Mixed-conducting oxides are used in many applications, including fuel cells, gas separation membrane...
Mixed-conducting oxides are attracting increased attention because of their potential uses in high-t...
Solid mixed-conducting electrolytes in the series La{sub l-x}A{sub x}Co{sub l-y}Fe{sub y}O{sub 3-{de...
Mixed ionic-electronic conducting (MIEC) ceramics as oxygen transport membranes (OTMs) can provide h...
Oxygen transport membranes (OTMs) represent a promising alternative for the extraction of oxygen com...
Pure oxygen is an important raw material with many important applications. The production of oxygen ...
Pure oxygen is an important raw material with many important applications. The production of oxygen ...
Although Nernst observed ionic conduction of zirconia-yttria solutions in 1899, the field of oxygen ...
Mixed ionic-electronic conducting ceramic membrane-based oxygen separation technology attracts great...
© 2018 Elsevier B.V. Pure oxygen is an important raw material with many important applications. The ...
Ba$_{0,5}$Sr$_{0,5}$Co$_{0,8}$Fe$_{0,2}$O$_{3-?}$ (BSCF) is the most promising material für energy e...
Mixed-conducting oxides have been used in many applications, including fuel cells, gas-separation me...
Ba0.5Sr0.5Co0.8Fe0.2O3-delta (BSCF), a mixed oxygen ionic and electronic conducting ceramic derived ...
Mixed-conducting oxides have been used in many applications, including fuel cells, gas separation me...
Among novel technologies under development as cost-effective alternatives to conventional oxygen pro...
Mixed-conducting oxides are used in many applications, including fuel cells, gas separation membrane...
Mixed-conducting oxides are attracting increased attention because of their potential uses in high-t...
Solid mixed-conducting electrolytes in the series La{sub l-x}A{sub x}Co{sub l-y}Fe{sub y}O{sub 3-{de...