Semiconducting-ionic conductors have been recently described as excellent electrolyte membranes for low-temperature operation solid oxide fuel cells (LT-SOFCs). In the present work, two new functional materials based on zinc oxide (ZnO)—a legacy material in semiconductors but exceptionally novel to solid state ionics—are developed as membranes in SOFCs for the first time. The proposed ZnO and ZnO-LCP (La/Pr doped CeO2) electrolytes are respectively sandwiched between two Ni0.8Co0.15Al0.05Li-oxide (NCAL) electrodes to construct fuel cell devices. The assembled ZnO fuel cell demonstrates encouraging power outputs of 158–482 mW cm−2 and high open circuit voltages (OCVs) of 1–1.06 V at 450–550 °C, while the ZnO-LCP cell delivers significantly e...
Solid oxide fuel cells (SOFCs) are the future of energy production in America. They offer great prom...
The advantages of lowering the operation temperature of SOFCs have attracted great interest worldwid...
SOFC solid electrolytes are known for their ionic conductivity characteristics, which increase with ...
Semiconducting-ionic conductors have been recently described as excellent electrolyte membranes for ...
Recently, appreciable ionic conduction has been frequently observed in multifunctional semiconductor...
Over the past one decade, several cell component materials and their combinations have been attempte...
Zinc oxide, a direct band gap semiconductor of ≥3.30 eV, is prevalent in potential requests for ener...
The high-temperature membranes or membrane-electrode assemblies (MEAs) for solid oxide fuel cells co...
Zinc oxide (ZnO), a direct wide band gap semiconductor (≥3.30 eV), has widespread potential for appl...
The development of electrolyte materials for the high temperature (800-1000 ∘C) solid oxide fuel cel...
© 2019 The p-type semiconductor La0.65Sr0.3Ce0.05Cr0.5Fe0.5O3-δ (CLSCrF) is for the first time compo...
The electrolyte supported cells satisfy the requirements for the application in the solid oxide fuel...
Solid oxide fuel cells (SOFCs) operating at low temperature (~500 °C) enable new fields of applicati...
Semiconductor ionic electrolytes are attracting growing interest for developing low-temperature soli...
Highly dense proton conducting materials of BCZYSZn (BaCe0.8-xZrxY0.15Sm0.05O3-δ (x = 0.15, 0.20) wi...
Solid oxide fuel cells (SOFCs) are the future of energy production in America. They offer great prom...
The advantages of lowering the operation temperature of SOFCs have attracted great interest worldwid...
SOFC solid electrolytes are known for their ionic conductivity characteristics, which increase with ...
Semiconducting-ionic conductors have been recently described as excellent electrolyte membranes for ...
Recently, appreciable ionic conduction has been frequently observed in multifunctional semiconductor...
Over the past one decade, several cell component materials and their combinations have been attempte...
Zinc oxide, a direct band gap semiconductor of ≥3.30 eV, is prevalent in potential requests for ener...
The high-temperature membranes or membrane-electrode assemblies (MEAs) for solid oxide fuel cells co...
Zinc oxide (ZnO), a direct wide band gap semiconductor (≥3.30 eV), has widespread potential for appl...
The development of electrolyte materials for the high temperature (800-1000 ∘C) solid oxide fuel cel...
© 2019 The p-type semiconductor La0.65Sr0.3Ce0.05Cr0.5Fe0.5O3-δ (CLSCrF) is for the first time compo...
The electrolyte supported cells satisfy the requirements for the application in the solid oxide fuel...
Solid oxide fuel cells (SOFCs) operating at low temperature (~500 °C) enable new fields of applicati...
Semiconductor ionic electrolytes are attracting growing interest for developing low-temperature soli...
Highly dense proton conducting materials of BCZYSZn (BaCe0.8-xZrxY0.15Sm0.05O3-δ (x = 0.15, 0.20) wi...
Solid oxide fuel cells (SOFCs) are the future of energy production in America. They offer great prom...
The advantages of lowering the operation temperature of SOFCs have attracted great interest worldwid...
SOFC solid electrolytes are known for their ionic conductivity characteristics, which increase with ...