A complete set of triple-layer (anode/electrolyte/cathode) hollow fiber for high temperature micro-tubular solid oxide fuel cell (MT-SOFC) consisting of nickel oxide (NiO) – yttria-stabilized zirconia (YSZ)/YSZ/lanthanum strontium manganite (LSM) – YSZ has been successfully fabricated in this study. A simplified fabrication technique of phase inversion-based co-extrusion/co-sintering has yielded a perfectly bounded sandwich structure with free-delamination and defect layers. The effect of co-sintering temperatures (1300 °C–1450 °C) on the morphologies, elemental distributions, electrolyte gas-tightness, mechanical strength, electrochemical performance and the impedance spectra test are well-inspected. The increase of co-sintering temperatur...
Anode-supported micro-tubular solid oxide fuel cell (MT-SOFC) made from lithium (Li) doped cerium ga...
Phase inversion-based extrusion was employed in this study to fabricate porous cathode-supported mic...
Cerium-gadolinium oxide is a promising material for electrolytes of intermediate temperature solid o...
In this study, the phase inversion-based co-extrusion method was employed to fabricate a structural-...
Micro-tubular solid oxide fuel cells (MT-SOFCs) have attracted much attention due to; higher volumet...
The development of micro-tubular solid oxide fuel cells (SOFCs) has received more and more attention...
A novel combination of phase inversion and electrophoretic deposition was used in the fabrication of...
The effects of co-sintering temperature on anode microstructure, electrolyte film microstructure, an...
Dual-layer hollow fiber (DLHF) micro-tubular solid oxide fuel cell (MT-SOFC) consisting of nickel ox...
Fabrication of micro-tubular solid oxide fuel cells (MT-SOFC) typically involves multiple and repeti...
Fabrication of micro-tubular solid oxide fuel cells (MT-SOFC) typically involves multiple and repeti...
A complete set of triple-layer (anode/electrolyte/cathode) hollow fiber for high temperature micro-t...
Dual-layer hollow fiber (DLHF) micro-tubular solid oxide fuel cell (MT-SOFC) consisting of nickel ox...
In this study, a high performance micro-tubular solid oxide fuel cell (SOFC) has been developed by d...
This study aims to investigate the fabrication of anode/electrolyte dual-layer hollow fiber (DLHF) w...
Anode-supported micro-tubular solid oxide fuel cell (MT-SOFC) made from lithium (Li) doped cerium ga...
Phase inversion-based extrusion was employed in this study to fabricate porous cathode-supported mic...
Cerium-gadolinium oxide is a promising material for electrolytes of intermediate temperature solid o...
In this study, the phase inversion-based co-extrusion method was employed to fabricate a structural-...
Micro-tubular solid oxide fuel cells (MT-SOFCs) have attracted much attention due to; higher volumet...
The development of micro-tubular solid oxide fuel cells (SOFCs) has received more and more attention...
A novel combination of phase inversion and electrophoretic deposition was used in the fabrication of...
The effects of co-sintering temperature on anode microstructure, electrolyte film microstructure, an...
Dual-layer hollow fiber (DLHF) micro-tubular solid oxide fuel cell (MT-SOFC) consisting of nickel ox...
Fabrication of micro-tubular solid oxide fuel cells (MT-SOFC) typically involves multiple and repeti...
Fabrication of micro-tubular solid oxide fuel cells (MT-SOFC) typically involves multiple and repeti...
A complete set of triple-layer (anode/electrolyte/cathode) hollow fiber for high temperature micro-t...
Dual-layer hollow fiber (DLHF) micro-tubular solid oxide fuel cell (MT-SOFC) consisting of nickel ox...
In this study, a high performance micro-tubular solid oxide fuel cell (SOFC) has been developed by d...
This study aims to investigate the fabrication of anode/electrolyte dual-layer hollow fiber (DLHF) w...
Anode-supported micro-tubular solid oxide fuel cell (MT-SOFC) made from lithium (Li) doped cerium ga...
Phase inversion-based extrusion was employed in this study to fabricate porous cathode-supported mic...
Cerium-gadolinium oxide is a promising material for electrolytes of intermediate temperature solid o...