AV Kasyanova, LR Tarutina, AO Rudenko… - Russian Chemical …, 2020 - iopscience.iop.org
Protonic ceramic fuel cells and electrolysis cells represent low-and intermediate- temperature electrochemical devices, which allow chemical-to-electrical energy conversion …
Oxygen vacancies play crucial roles in determining the physical properties of metal oxides, representing important building blocks in many scientific and technological fields due to their …
DS Tsvetkov, VV Sereda, DA Malyshkin… - Journal of Materials …, 2022 - pubs.rsc.org
Strong coupling between the chemical composition and crystal lattice dimensions resulting in the contraction or expansion of a material upon change of its chemical composition is …
Topotactic phase transition of functional oxides induced by changes in oxygen nonstoichiometry can largely alter multiple physical and chemical properties, including …
In this work, chemical expansion in perovskite oxides was characterized in detail, motivated, inter alia, by a desire to understand the lower chemical expansion coefficients observed for …
Ferroelectric thin films of wurtzite-type aluminum scandium nitride (Al1− xScxN) are promising candidates for non-volatile memory applications and high-temperature sensors …
YY Lin, AXB Yong, WJ Gustafson, CN Reedy… - Current Opinion in Solid …, 2020 - Elsevier
Cation-conducting, solid-state electrolytes represent a burgeoning focus of battery research, offering the potential for enhanced safety profiles, durability, and wide electrochemical …
Electrolytes and electrodes in protonic ceramic electrolysis/fuel cells (PCECs/PCFCs) can exhibit significant chemical strains upon incorporating H2O into the lattice. To increase …
ML Weber, M Wilhelm, L Jin, U Breuer, R Dittmann… - ACS …, 2021 - ACS Publications
Exsolution phenomena are highly debated as efficient synthesis routes for nanostructured composite electrode materials for the application in solid oxide cells (SOCs) and the …