Recent advances in microstructural control via thermal spraying for solid oxide fuel cells

J Gao, MB Hanif, H Zhang, M Motola, CX Li - Chemical Engineering …, 2023 - Elsevier
This article provides a comprehensive review of the microstructure development of plasma-
sprayed ceramic coatings in relation to the deposition of functional layers within solid oxide …

Segregation and interdiffusion processes in perovskites: a review of recent advances

N Porotnikova, D Osinkin - Journal of Materials Chemistry A, 2024 - pubs.rsc.org
High-temperature devices are eco-friendly devices with the potential to become efficient
systems for energy conversion and storage. The stability of components within solid oxide …

[PDF][PDF] Chemistry and electrochemistry of CeO2-based interlayers: Prolonging the lifetime of solid oxide fuel and electrolysis cells

MV Erpalov, AP Tarutin, NA Danilov, DA Osinkin… - Russ. Chem …, 2023 - researchgate.net
Solid oxide fuel cells (SOFCs) and electrolysis cells (SOECs) offer a promising basis for
environmentally friendly and efficient energy conversion, addressing important challenges …

High-Performance (Ce, Zr)O2-Free Solid Oxide Fuel Cell with an Active-Sintered Cathode Interface and a Low-Temperature Densified Micron-Scale Barrier Layer

Q Lyu, T Zhu, N Xu, H Qu, Q Zhong - ACS Applied Materials & …, 2023 - ACS Publications
Incorporating a dense GDC (Gd0. 1Ce0. 9O1. 95) barrier layer is an effective strategy to
avoid harmful reactions between the LSCF (La0. 6Sr0. 4Co0. 2Fe0. 8O3− δ) cathode and …

Advances in solid oxide fuel cell electrolyte fabrication by pulsed laser deposition

M Tang, Y Niu, W Muhammad, S Muhammad… - International Journal of …, 2024 - Elsevier
Solid oxide fuel cells (SOFCs) are promising devices for clean and efficient energy
conversion. However, SOFCs require high-quality electrolytes that can transport ions and …

Electrochemical evaluation of Pr1. 85M0. 15NiO4+ x (M= Ba, Sr, Ca) cathodes for protonic ceramic fuel cells

Y Gu, R Peng, P Xiong, S Li, Z Wang, H Dai, L Bi - Ceramics International, 2024 - Elsevier
Abstract Pr 1.85 M 0.15 NiO 4+ x (M represents Ba, Sr, or Ca) materials were prepared and
evaluated as cathodes for protonic ceramic fuel cells (PCFCs). Compared with the Sr and Ba …

A highly efficient Sb-doped La0. 5Sr0. 5FeO3-δ cathode for protonic ceramic fuel cells

S He, H Dai, L Bi - Ceramics International, 2024 - Elsevier
Abstract The La 0.5 Sr 0.5 FeO 3-δ (LSF) material is modified with Sb doping to improve the
performance of conventional LSF cathode for protonic ceramic fuel cells (PCFCs). The Sb …

Effect of the operating temperature on the degradation of solid oxide electrolysis cells

G Sassone, O Celikbilek, M Hubert… - Journal of Power …, 2024 - Elsevier
The present work aims to better understand the effect of operating temperature on the
degradation of Solid Oxide Electrolysis Cells (SOECs). The studied SOECs consist of La 0.6 …

A way to limit the long-term degradation of solid oxide fuel cell cathode by decorating the surface with K2NiF4-Structure Pr4Ni3O10+ δ phase

S Saher, CY Tan, S Ramesh, BK Yap, BH Ong… - Journal of Power …, 2024 - Elsevier
Abstract Prolonged annealing of La 0.6 Sr 0.4 Co 0.2 Fe 0.8 O 3-δ (LSCF) at 700° C for 1000
h resulted in phase segregation on the surface in the form of submicron-sized SrO on the …

Utilizing in-situ formed heterostructure oxides as a cathode for proton-conducting solid oxide fuel cells

Y Gu, X Xu, W Dai, Z Wang, Y Yin, L Bi - Journal of the European Ceramic …, 2024 - Elsevier
By modifying the proton conductor BaTbO 3 with the element Co, it is discovered that the
solubility of Co in BaTbO 3 is restricted to 20 mol.%, and phase segregations happen for …