Materials challenges toward proton-conducting oxide fuel cells: a critical review

E Fabbri, D Pergolesi, E Traversa - Chemical Society Reviews, 2010 - pubs.rsc.org
The increasing world population and the need to improve quality of life for a large
percentage of human beings are the driving forces for the search for sustainable energy …

A review on experimental and theoretical studies of perovskite barium zirconate proton conductors

MK Hossain, MC Biswas, RK Chanda, MHK Rubel… - Emergent …, 2021 - Springer
Highly stable proton conductive oxide materials with improved electrochemical and
thermochemical properties are in great demand in numerous fields such as portable …

Improving proton conductivity by navigating proton trapping in high scandium-doped barium zirconate electrolytes

CY Regalado Vera, H Ding, J Urban-Klaehn… - Chemistry of …, 2023 - ACS Publications
Proton-conducting oxides are used in intermediate-temperature (300° C< T< 700° C)
applications of fuel cells, electrolyzers, membrane reactors, hydrogen pumps, and sensors …

Technological challenges and advancement in proton conductors: a review

D Vignesh, E Rout - Energy & Fuels, 2023 - ACS Publications
Proton conductors (PCs) are multifunctional perovskite materials with structural, electrical,
and chemical compatibilities that serve as principal components in proton conducting solid …

Effect of dopant–host ionic radii mismatch on acceptor-doped barium zirconate microstructure and proton conductivity

E Gilardi, E Fabbri, L Bi, JLM Rupp… - The Journal of …, 2017 - ACS Publications
In the present study, morphological and electrical properties of BaZrO3 were investigated as
a function of the ionic radii mismatch between Zr and the different B-site dopants (Al, Sc, In …

Dense Y-doped ion conducting perovskite films of BaZrO3, BaSnO3, and BaCeO3 for SOFC applications produced by powder aerosol deposition at room temperature

J Exner, T Nazarenus, J Kita, R Moos - International Journal of Hydrogen …, 2020 - Elsevier
State-of-the-art solid oxide fuel cells (SOFC) are based on oxide ion conducting zirconia
electrolytes, typically doped by yttria or scandia. Major drawback of these systems are their …

Long-Range and Short-Range Structure of Proton-Conducting Y:BaZrO3

F Giannici, M Shirpour, A Longo, A Martorana… - Chemistry of …, 2011 - ACS Publications
Yttrium-doped barium zirconate (BZY) is the most promising candidate for proton-conducting
ceramics and has been extensively studied in recent years. The detailed features of the …

Enhanced grain boundary conductivity of Gd and Sc co-doping BaZrO3 proton conductor for proton ceramic fuel cell

G Qin, J Bao, J Gao, F Ruan, S An, Z Wang… - Chemical Engineering …, 2023 - Elsevier
Applicability of BaZrO 3 proton conductor as electrolytes in fuel cells and electrolysis cells is
limited due to lower grain boundary conductivity and serious sintering activity. Herein, we …

[图书][B] Proton-conducting ceramics: from fundamentals to applied research

M Marrony - 2015 - books.google.com
This book proposes a wide overview of the research and development of proton-conducting
solid oxide materials. It is the first to approach the topic on proton-conducting ceramics and …

Non-stoichiometry, structure and properties of proton-conducting perovskite oxides

S Li, JTS Irvine - Solid State Ionics, 2021 - Elsevier
The demand for clean and sustainable energy has garnered great interest in new energy
materials. Among them, high temperature proton-conducting perovskite oxides are, or can …