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Solid oxide electrolysis cells–current material development and industrial application
Solid Oxide Electrolysis Cells (SOECs) have proven to be a highly efficient key technology
for producing valuable chemicals and fuels from renewably generated electricity at …
for producing valuable chemicals and fuels from renewably generated electricity at …
A critical review on cathode materials for steam electrolysis in solid oxide electrolysis
The major technologies being considered for the green hydrogen production are polymer
electrolyte membrane (PEM) and solid oxide electrolysis (SOE). While PEM electrolysis …
electrolyte membrane (PEM) and solid oxide electrolysis (SOE). While PEM electrolysis …
A review of high temperature co-electrolysis of H 2 O and CO 2 to produce sustainable fuels using solid oxide electrolysis cells (SOECs): advanced materials and …
High-temperature solid oxide electrolysis cells (SOECs) are advanced electrochemical
energy storage and conversion devices with high conversion/energy efficiencies. They offer …
energy storage and conversion devices with high conversion/energy efficiencies. They offer …
Sr segregation in perovskite oxides: why it happens and how it exists
Among the phenomena related to the surface rearrangement of cations in perovskite-based
oxides, A-site cation enrichment, Sr in particular, near the surface has been frequently …
oxides, A-site cation enrichment, Sr in particular, near the surface has been frequently …
Medium-Entropy perovskites Sr (FeαTiβCoγMnζ) O3-δ as promising cathodes for intermediate temperature solid oxide fuel cell
Abstract Medium-entropy perovskites Sr (Fe α Ti β Co γ Mn ζ) O 3-δ (SFTCM) are
investigated as potential cathodes for intermediate temperature solid oxide fuel cell (IT …
investigated as potential cathodes for intermediate temperature solid oxide fuel cell (IT …
Nano-socketed nickel particles with enhanced coking resistance grown in situ by redox exsolution
Metal particles supported on oxide surfaces are used as catalysts for a wide variety of
processes in the chemical and energy conversion industries. For catalytic applications …
processes in the chemical and energy conversion industries. For catalytic applications …
Evolution of the electrochemical interface in high-temperature fuel cells and electrolysers
The critical region determining the performance and lifetime of solid oxide electrochemical
systems is normally at the electrode side of the electrode/electrolyte interface. Typically this …
systems is normally at the electrode side of the electrode/electrolyte interface. Typically this …
Improving the activity for oxygen evolution reaction by tailoring oxygen defects in double perovskite oxides
Develo** low‐cost, high‐performance electro‐catalysts is essential for large‐scale
application of electrochemical energy devices. In this article, reported are the findings in …
application of electrochemical energy devices. In this article, reported are the findings in …
Heterointerface engineering for enhancing the electrochemical performance of solid oxide cells
Solid oxide cells (SOCs) have the potential to be the most efficient energy storage and
conversion systems. To minimize energy loss due to charge and mass transport associated …
conversion systems. To minimize energy loss due to charge and mass transport associated …
High‐entropy perovskites for energy conversion and storage: design, synthesis, and potential applications
Perovskites have shown tremendous promise as functional materials for several energy
conversion and storage technologies, including rechargeable batteries,(electro) catalysts …
conversion and storage technologies, including rechargeable batteries,(electro) catalysts …