Innovative advances and challenges in solid oxide electrolysis cells: Exploring surface segregation dynamics in perovskite electrodes

MB Hanif, S Rauf, MZ Khan, ZUD Babar… - Materials Science and …, 2024‏ - Elsevier
Hydrogen generation by means of environmentally friendly approaches is of paramount
importance in the field of contemporary science and technology. Solid oxide electrolysis …

Enhancing performance of lower-temperature solid oxide fuel cell cathodes through surface engineering: A review

HG Desta, G Gebreslassie, J Zhang, B Lin… - Progress in Materials …, 2024‏ - Elsevier
Solid oxide fuel cells (SOFCs) are recognized as highly efficient energy-conversion and eco-
friendliness technologies. However, the high-temperature operation of conventional SOFCs …

Recent Progress in Sr2Fe1.5Mo0.5O6‐δ‐Based Multifunctional Materials for Energy Conversion and Storage

H Sun, X Xu, Y Song, Z Shao - Advanced Functional Materials, 2024‏ - Wiley Online Library
Perovskite oxides, particularly double perovskite oxides, have drawn significant research
interest within the fields of solid‐state chemistry and materials science. As a quintessential …

Concurrent Amorphization and Nanocatalyst Formation in Cu‐Substituted Perovskite Oxide Surface: Effects on Oxygen Reduction Reaction at Elevated Temperatures

SH Jeon, WG Jung, H Bae, S Ahn, B Koo… - Advanced …, 2024‏ - Wiley Online Library
The activity and durability of chemical/electrochemical catalysts are significantly influenced
by their surface environments, highlighting the importance of thoroughly examining the …

[HTML][HTML] Temperature-controlled in-situ construction of composition-tunable nanoparticle-decorated SOFC cathodes with enhanced oxygen reduction kinetics and CO2 …

C Yao, B **a, H Zhang, H Wang, W Zhang… - Composites Part B …, 2025‏ - Elsevier
High oxygen reduction reaction (ORR) catalytic activity and CO 2 resistance of the cathode
are fundamental to the commercial application of solid oxide fuel cells (SOFCs). Therefore …

Highly active and stable oxygen electrode PrBaCo2O5+ δ-Ba2CoWO6 enabled by In Situ formed misfit dislocation interface for reversible solid oxide cell

M Zhang, J Liu, Z Du, Y He, Y Gong, Z Sun, B Fu… - Applied Catalysis B …, 2025‏ - Elsevier
The energy conversion efficiency and durability of the reversible solid oxide cell (RSOC) is
restricted by the development of highly active and stable oxygen electrode. Herein, an in-situ …

Multifunctional nanocomposite active layers synergistically enhance the performance of reversible proton ceramic cell

J **g, Z Lei, Z Zheng, H Wang, P Zhang, Z Yang… - Renewable Energy, 2025‏ - Elsevier
Reversible protonic ceramic cell (R-PCC) has garnered significant interest due to their
potential for efficient energy storage and conversion. However, the sluggish kinetics of …

Praseodymium–Cerium Oxide-Infiltrated Perovskite Cathode with Superior Electrochemical Performance for Solid Oxide Fuel Cells

HY Li, J Shin, Y Wu, PC Su - Nano Letters, 2024‏ - ACS Publications
This study presents a high-performance solid oxide fuel cell employing a perovskite
cathode, strontium iron molybdenum oxide [Sr2Fe1. 5Mo0. 5O6− δ (SFM)], infiltrated with …

Surface functionalizing for high‐temperature ceramic fuel cells using electrochemical deposition technique

S Nam, J Kim, H Kim, WC Jung - InfoScience, 2024‏ - Wiley Online Library
Electrochemical deposition technique, a method widely recognized for its precision and
versatility in the electronics industry, is gaining attraction in the energy field, particularly in …

Surface chemistry study on the SOEC electrodes during high-temperature H2O electrolysis

J Zhang - 2024‏ - theses.hal.science
This thesis focuses on the electrochemical performance and surface chemistry of advanced
Solid Oxide Electrolysis Cells (SOECs), with particular emphasis on the behavior of Ni/YSZ …