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, Ba₀.₅Sr₀.₅Co₀.₈Fe₀.₂O₃₋δ (BSCF) shows the best performance under ideal operating conditions. Thermal and chemical stability investigations, electrical behavior σ(T,pO₂,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 have been used in many applications, including fuel cells, gas separation me...
High temperature membranes can be used in numerous applications including ceramic filters, selective...
Ba0.5Sr0.5Co0.8Fe0.2O3-delta (BSCF), a mixed oxygen ionic and electronic conducting ceramic derived ...
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...
Ceramic membranes based on Mixed-Ionic-and-Electronic-Conducting (MIEC) oxides are capable of separa...
Mixed ionic and electronic conductors (MIEC) are used in numerous areas, such as cathode materials f...
Mixed ionic-electronic conductors (MIECs) that display high oxide ion conductivity (σo ) and electro...
Mixed ionic–electronic conductors (MIECs) that display high oxide ion conductivity (σo) and electron...
Ceramic high temperature oxygen transport membranes (OTMs) represent a promising alternative for the...
Although Nernst observed ionic conduction of zirconia-yttria solutions in 1899, the field of oxygen ...
Ba2In2O5 is a mixed ionic–electronic conducting (MIEC) ceramic-based material offering a large numbe...
Composite ceramic membranes based on the ionic conducting Tm-stabilized δ-Bi2O3 (BTM) and the electr...
Mixed-conducting oxides have been used in many applications, including fuel cells, gas-separation me...
DEVELOPMENT OF ASYMMETRIC DUAL PHASE COMPOSITE OXYGEN TRANSPORT MEMBRANESFalk Schulze-Küppers 1 – St...
Mixed-conducting oxides have been used in many applications, including fuel cells, gas separation me...
High temperature membranes can be used in numerous applications including ceramic filters, selective...
Ba0.5Sr0.5Co0.8Fe0.2O3-delta (BSCF), a mixed oxygen ionic and electronic conducting ceramic derived ...
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...
Ceramic membranes based on Mixed-Ionic-and-Electronic-Conducting (MIEC) oxides are capable of separa...
Mixed ionic and electronic conductors (MIEC) are used in numerous areas, such as cathode materials f...
Mixed ionic-electronic conductors (MIECs) that display high oxide ion conductivity (σo ) and electro...
Mixed ionic–electronic conductors (MIECs) that display high oxide ion conductivity (σo) and electron...
Ceramic high temperature oxygen transport membranes (OTMs) represent a promising alternative for the...
Although Nernst observed ionic conduction of zirconia-yttria solutions in 1899, the field of oxygen ...
Ba2In2O5 is a mixed ionic–electronic conducting (MIEC) ceramic-based material offering a large numbe...
Composite ceramic membranes based on the ionic conducting Tm-stabilized δ-Bi2O3 (BTM) and the electr...
Mixed-conducting oxides have been used in many applications, including fuel cells, gas-separation me...
DEVELOPMENT OF ASYMMETRIC DUAL PHASE COMPOSITE OXYGEN TRANSPORT MEMBRANESFalk Schulze-Küppers 1 – St...
Mixed-conducting oxides have been used in many applications, including fuel cells, gas separation me...
High temperature membranes can be used in numerous applications including ceramic filters, selective...
Ba0.5Sr0.5Co0.8Fe0.2O3-delta (BSCF), a mixed oxygen ionic and electronic conducting ceramic derived ...