We have studied all possible elementary reactions (including isomerization reactions) involved in the interaction of CH4 (methane), CH3CH3 (ethane), CH2CH2 (ethene), and CHCH (ethyne) with the Ru(0001
Electrochemical reduction of CO(2) to value-added chemicals and fuels is a promising strategy to sustain pressing renewable energy demands and address climate change issues. Direct observation of reac
Dataset for the publication: "Parallel experiments in electrochemical CO2 reduction enabled by standardized analytics", https://doi.org/10.1038/s41929-024-01172-x, divided by paper Figure. The dataset
The data describes a study of producing formate from CO2 electrochemical reduction with high efficiency and the direct utilization of this product to power a formate fuel cell.
Herein, we present the reduction chemistry of a dinuclear α-diimine rhenium complex, 1, [Re2(L)(CO)6Cl2], with a proton responsive ligand and its application as a catalyst in the electrochemical CO2