Electrochemical splitting of water is an appealing solution for energy storage and conversion to overcome the reliance on depleting fossil fuel reserves and prevent severe deterioration …
Manipulating the intrinsic activity of heterogeneous catalysts at the atomic level is an effective strategy to improve the electrocatalytic performances but remains challenging …
AH Al-Naggar, NM Shinde, JS Kim, RS Mane - Coordination Chemistry …, 2023 - Elsevier
Transition metal oxide electrocatalysts have received significant research interest toward the advancement of environmentally acceptable electrochemical applications and systems …
Y Wang, X Zheng, D Wang - Nano Research, 2022 - Springer
Metal-based electrocatalysts with different sizes (single atoms, nanoclusters, and nanoparticles) show different catalytic behaviors for various electrocatalytic reactions …
Single‐atom catalysts (SACs) are being pursued as economical electrocatalysts. However, their low active‐site loading, poor interactions, and unclear catalytic mechanism call for …
Oxygen reduction and evolution reactions constitute the core process of many vital energy storage or conversion techniques. However, the kinetic sluggishness of the oxygen redox …
Y Du, B Li, G Xu, L Wang - InfoMat, 2023 - Wiley Online Library
The hydrogen energy generated by the electrocatalytic water splitting reaction has been established as a renewable and clean energy carrier with ultra‐high energy density, which …
Compared to modern fossil‐fuel‐based refineries, the emerging electrocatalytic refinery (e‐ refinery) is a more sustainable and environmentally benign strategy to convert renewable …