Water electrolysis toward elevated temperature: advances, challenges and frontiers

W Zhang, M Liu, X Gu, Y Shi, Z Deng, N Cai - Chemical Reviews, 2023 - ACS Publications
Since severe global warming and related climate issues have been caused by the extensive
utilization of fossil fuels, the vigorous development of renewable resources is needed, and …

Nanostructured spinel high-entropy oxide (Fe0. 2Mn0. 2Co0. 2Ni0. 2Zn0. 2) 3O4 as a potential cathode for solid oxide fuel cells

Z Lin, B Ma, Z Chen, Y Zhou - Ceramics International, 2023 - Elsevier
Commercial use of solid oxide fuel cells (SOFCs) requires high output performance and
excellent long-term stability for cathode materials. A nanostructured spinel high-entropy …

Lowering the Temperature of Solid Oxide Electrochemical Cells Using Triple‐Doped Bismuth Oxides

H Yu, I Jeong, S Jang, D Kim, HN Im… - Advanced …, 2024 - Wiley Online Library
Despite the great potential of solid oxide electrochemical cells (SOCs) as highly efficient
energy conversion devices, the undesirable high operating temperature limits their wider …

Exploring B-site high-entropy configuration of spinel oxides for improved cathode performance in solid oxide fuel cells

Z Lin, B Ma, Z Chen, L Cheng, Y Zhou - Journal of the European Ceramic …, 2024 - Elsevier
High-entropy engineering is an emerging strategy to enhance material properties beyond
their individual components. In this study, we synthesized a high-entropy spinel oxide …

Exceptionally High‐Performance Reversible Solid Oxide Electrochemical Cells with Ultrathin and Defect‐Free Sm0.075Nd0.075Ce0.85O2‐δ Interlayers

H Yu, HN Im, KT Lee - Advanced Functional Materials, 2022 - Wiley Online Library
Solid oxide electrochemical cells (SOCs) are promising energy conversion and storage
systems owing to their high efficiency and low environmental impact. To lower operating …

Recent progress in oxygen electrodes for protonic ceramic electrochemical cells

S Oh, H Kim, I Jeong, D Kim, H Yu, KT Lee - Journal of the Korean …, 2024 - Springer
Protonic ceramic electrochemical cells, a promising technology for energy conversion and
storage, have garnered significant interest in recent years owing to their superior low …

Nanostructured Mg-doped Mn–Cr spinel oxide cathodes for solid oxide fuel cells with optimized performance

B Ma, Z Chen, Z Lin, L Cheng, Y Zhou - Journal of Power Sources, 2023 - Elsevier
The cathode properties are critical for solid oxide fuel cells (SOFCs) performance and a
major challenge for commercialization. This study employs the impregnation method to …

In-situ spectroscopic ellipsometry for deeply understanding the interface evolution dynamics of anodic ZrO2 nanotubes

J Chen, L Li - Surfaces and Interfaces, 2023 - Elsevier
The interface evolution dynamics within the initial anodization of Zr remains ambiguous
while it occupies a pivotal role in understanding the growth kinetics and preparing desirable …

A Machine Learning‐Enhanced Framework for the Accelerated Development of Spinel Oxide Electrocatalysts

I Jeong, Y Shim, S Oh, JM Yuk, KM Roh… - Advanced Energy …, 2024 - Wiley Online Library
The surging demand for sustainable energy has spurred intensive research into
electrochemical conversion devices such as fuel cells, water splitting, and metal‐air …

Highly conductive and stable electrolytes for solid oxide electrolysis and fuel cells: fabrication, characterisation, recent progress and challenges

J Li, Q Cai, BA Horri - Materials Advances, 2025 - pubs.rsc.org
Hydrogen fuel cells and hydrogen production stand at the forefront of efforts to achieve net-
zero emissions. Among these technologies, solid oxide fuel cells (SOFCs) and electrolysers …