Y Li, W Zhang, Y Zheng, J Chen, B Yu… - Chemical Society …, 2017 - pubs.rsc.org
Solid oxide cell (SOC) based energy conversion systems have the potential to become the cleanest and most efficient systems for reversible conversion between electricity and …
Development of new functional materials with improved characteristics for solid oxide fuel cells (SOFCs) and solid oxide electrolysis cells (SOECs) is one of the most important tasks of …
X Li, Z Cheng, X Wang - Electrochemical Energy Reviews, 2021 - Springer
The oxygen evolution reaction (OER) with its intractably high overpotentials is the rate- limiting step in many devices, including rechargeable metal–air batteries, water electrolysis …
The instability of the surface chemistry in transition metal oxide perovskites is the main factor hindering the long-term durability of oxygen electrodes in solid oxide electrochemical cells …
K Chen, SP Jiang - Electrochemical Energy Reviews, 2020 - Springer
Solid oxide cells (SOCs) are highly efficient and environmentally benign devices that can be used to store renewable electrical energy in the form of fuels such as hydrogen in the solid …
Improving the kinetics of O2 reduction on oxide surfaces is critical in many energy and fuel conversion technologies. Here we show that the acidity scale for binary oxides is a powerful …
Chemical substitution, which can be iso-or heterovalent, is the primary strategy to tailor material properties. There are various ways how a material can react to substitution …
Fuel cells and electrolysis cells as important types of energy conversion devices can be divided into groups based on the electrolyte material. However, solid oxide cells (SOCs) …
X Li, Z Chen, D Huan, B Qiu, K Zhu, Z Qi… - ACS Materials …, 2023 - ACS Publications
For proton-conducting solid oxide fuel cells (PCFCs), accelerating the kinetics of the proton involved oxygen reduction reaction (P-ORR) occurring primarily on the surface of cathodes …