Why do BaCo0. 4Fe0. 4Zr0. 1Y0. 1O3–δ-derived complex oxides become one of the most promising electrodes for protonic ceramic electrochemical cells? An …

LR Tarutina, MA Gordeeva, DE Matkin… - Chemical Engineering …, 2024 - Elsevier
Efficient energy conversion through the use of fuel and electrolysis cells is crucial for
addressing the challenges posed by hydrogen energy and carbon neutrality initiatives. Solid …

High-temperature gas sensors based on proton-conducting ceramic oxides. A brief review

G Starostin, AN Volkov, AS Kalyakin… - Ceramics International, 2024 - Elsevier
Proton-conducting ceramic oxides represent a promising class of materials for a range of
high-temperature applications. Their excellent proton transport capabilities rival those of …

Recent Advances and Challenges in Perovskite‐Based Protonic Ceramic Electrolytes: Design Strategies and Fabrication Innovations

H Nie, Z Liu, M Xiao, G Yang, T Li… - Advanced Functional …, 2024 - Wiley Online Library
Protonic ceramic electrochemical cells (PCECs) have received extensive research attention
as full solid‐state, electrochemical devices that can interconvert electrical and chemical …

Construction of proton exchange membrane with high proton conductivity based on 3D self-assembly structures as multiple proton transport channels

L Li, J Zhao, Y Zhang, Y Wang, Y Wang, B Su… - International Journal of …, 2025 - Elsevier
Proton exchange membranes are currently of a great interest due to their tunable proton
transport channels in design. However, the construction of proton transport channels in …

Transport properties of highly dense proton-conducting BaSn1− xInxO3− δ ceramics

GN Starostin, MT Akopian, GK Vdovin… - International Journal of …, 2024 - Elsevier
Doped barium stannate belongs to the perovskite-structured complex oxides with proton
transport capability. Such objects are of high interest in terms of their application in various …

Synergistic effects of liquid phase sintering and B-site substitution to enhance proton conductivity of BaZr0. 1Ce0. 7Y0. 1Yb0. 1O3-δ for protonic ceramic fuel cell

K Li, Y Liang, J Zhang, B Yu, L Jia - International Journal of Hydrogen …, 2024 - Elsevier
This paper is dedicated to improving the sintering and conductivity of BaZr 0.1 Ce 0.7 Y 0.1
Yb 0.1 O 3-δ (BZCYYb) by adding ZnO–CuO dual-sintering aids. The synergistic effects of …

Interfacial Engineering for Enhanced Protonic Conduction in NaxCoO2−δ–Sm0.2Ce0.8O2−δ Semiconductor Ionic Heterostructures for Low-Temperature Solid …

K Sivanandam, SB Krishna Moorthy - ACS Applied Energy …, 2024 - ACS Publications
Interfacial engineering is pivotal in optimizing the ionic conductivity in semiconductor–ionic
electrolytes for low-temperature solid oxide fuel cells (LT-SOFCs). In this study, we propose …

[HTML][HTML] Alternative processing routes on CsH2PO4 proton conductors: Cold sintering and ball-milling routes

BMG Melo, FJA Loureiro, SM Mikhalev, DP Fagg… - International Journal of …, 2024 - Elsevier
Cesium dihydrogen phosphate (CsH 2 PO 4) holds great potential as electrolyte for
intermediate-temperature fuel cells and electrochemical devices due to its high proton …

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 …

Defect scattering and thermionic landscape of acceptor doped BaCeO3 polymorph for intermediate temperature fuel cell technology

D Vignesh, E Rout - Ceramics International, 2024 - Elsevier
Trade-off parameters (proton conductivity and chemical stability) among standalone and
acceptor-doped proton-conducting electrolytes hinder their practical utility within the fuel cell …