A comprehensive review of solid oxide fuel cells operating on various promising alternative fuels

Q Xu, Z Guo, L ** highly active and durable bifunctional air electrodes for reversible protonic ceramic cells
Y Song, J Liu, Y Wang, D Guan… - Advanced Energy …, 2021 - Wiley Online Library
Reversible protonic ceramic cells (RePCCs) can facilitate the global transition to renewable
energy sources by providing high efficiency, scalable, and fuel‐flexible energy generation …

A review on proton conducting electrolytes for clean energy and intermediate temperature-solid oxide fuel cells

S Hossain, AM Abdalla, SNB Jamain, JH Zaini… - … and Sustainable Energy …, 2017 - Elsevier
The aims of this review article is to understand the mechanism of proton-conducting solid
oxide fuel cells (SOFCs) and compare it with conventional SOFC, to understand how …

From electrolyte and electrode materials to large‐area protonic ceramic fuel cells: a review

S Guo, L Jiang, Y Li, P Zhong, SA Ismail… - Advanced Functional …, 2024 - Wiley Online Library
Fuel cells can efficiently convert the chemical energy in fuels like hydrogen and methane
into electricity and are an important component for the forthcoming hydrogen society …

Mixed‐conducting perovskites as cathode materials for protonic ceramic fuel cells: understanding the trends in proton uptake

R Zohourian, R Merkle, G Raimondi… - Advanced Functional …, 2018 - Wiley Online Library
The proton uptake of 18 compositions in the perovskite family (Ba, Sr, La)(Fe, Co, Zn, Y) O3‐
δ, perovskites, which are potential cathode materials for protonic ceramic fuel cells (PCFCs) …

Proton conductive metal phosphonate frameworks

SS Bao, GKH Shimizu, LM Zheng - Coordination Chemistry Reviews, 2019 - Elsevier
This review covers basic design principles and offers a cross-section of the current status of
phosphonate MOFs as proton conductors. Metal phosphonates are often sustained by …