Current and further trajectories in designing functional materials for solid oxide electrochemical cells: A review of other reviews

S Baratov, E Filonova, A Ivanova, MB Hanif… - Journal of Energy …, 2024‏ - Elsevier
Complex oxides are an important class of materials with enormous potential for
electrochemical applications. Depending on their composition and structure, such complex …

A review of progress in proton ceramic electrochemical cells: material and structural design, coupled with value-added chemical production

Y Wang, Y Ling, B Wang, G Zhai, G Yang… - Energy & …, 2023‏ - pubs.rsc.org
Proton ceramic electrochemical cells (PCECs) have attracted significant attention from
governmental institutions and research societies as an emerging technology for energy …

A real proton‐conductive, robust, and cobalt‐free cathode for proton‐conducting solid oxide fuel cells with exceptional performance

Y Yin, D **ao, S Wu, EH Da'as, Y Gu, L Bi - SusMat, 2023‏ - Wiley Online Library
The development of proton, oxygen‐ion, and electron mixed conducting materials, known as
triple‐conduction materials, as cathodes for proton‐conducting solid oxide fuel cells (H …

Fundamental Understanding and Applications of Protonic Y‐ and Yb‐Coped Ba(Ce,Zr)O3 Perovskites: State‐of‐the‐Art and Perspectives

NA Danilov, IA Starostina, GN Starostin… - Advanced Energy …, 2023‏ - Wiley Online Library
Proton‐conducting oxide materials are interesting objects from both fundamental and
applied viewpoints due to the origination of protonic defects in a crystal structure as a result …

A comprehensive review on durability improvement of solid oxide fuel cells for commercial stationary power generation systems

MT Mehran, MZ Khan, RH Song, TH Lim, M Naqvi… - Applied Energy, 2023‏ - Elsevier
Solid oxide fuel cells (SOFCs) are recognized as an alternative for power generation
applications due to their high efficiency and environment-friendly behaviour. The electronic …

In situ engineering of a cobalt‐free perovskite air electrode enabling efficient reversible oxygen reduction/evolution reactions

T Hu, F Zhu, J **a, F He, Z Du, Y Zhou… - Advanced Functional …, 2023‏ - Wiley Online Library
Reversible protonic ceramic electrochemical cells (R‐PCECs) have received increasing
focus for their good capability of converting and storing energy. However, the widely used …

Alternative B-site-doped La0. 6Sr0. 4Co0. 2Fe0. 8-xMxO3 (M= Ni, Cu, Nb; x= 0, 0.1, 0.2) as innovative cathode material for LT-SOFC with enhanced charge transfer …

W Jia, Y Wang, J Huang, M Li, B **ang, Y Wang, L Wu… - Applied Energy, 2024‏ - Elsevier
Abstract Although La 0.6 Sr 0.4 Co 0.2 Fe 0.8 O 3 (LSCF) owns a high level of maturity as a
cathode material for intermediate and high-temperature SOFCs, there still exists tremendous …

Highly active and durable triple conducting composite air electrode for low-temperature protonic ceramic fuel cells

Q Huang, S Jiang, Y Wang, J Jiang, Y Chen, J Xu… - Nano Research, 2023‏ - Springer
Protonic ceramic fuel cells (PCFCs) are more suitable for operation at low temperatures due
to their smaller activation energy (E a). Unfortunately, the utilization of PCFC technology at …

[HTML][HTML] Mitigating thermal expansion effects in solid oxide fuel cell cathodes: A critical review

N Shah, X Xu, J Love, H Wang, Z Zhu, L Ge - Journal of Power Sources, 2024‏ - Elsevier
Solid oxide fuel cells (SOFCs) are a promising technology for clean electricity generation.
However, their performance degradation over time and with thermal cycles due to thermal …

Attempted preparation of La0.5Ba0.5MnO3−δ leading to an in-situ formation of manganate nanocomposites as a cathode for proton-conducting solid oxide fuel …

R Zhou, Y Yin, H Dai, X Yang, Y Gu, L Bi - Journal of Advanced …, 2023‏ - sciopen.com
Abstract A La 0.5 Ba 0.5 MnO 3− δ oxide was prepared using the sol–gel technique. Instead
of a pure phase, La 0.5 Ba 0.5 MnO 3− δ was discovered to be a combination of La 0.7 Ba …