Single-site metal atoms (SMAs) on supports are attracting extensive interest as new catalytic systems because of maximized atom utilization and superior performance. However, rational design of configuration-optimized SMAs with high activity from the perspectives of fundamental electron spin is highly challenging. Herein, N-coordinated Fe single atoms are successfully distributed over axial carbon micropores to form dangling-FeN centers (d-FeN). This unique d-FeN demonstrates much higher intrinsic activity toward oxygen reduction reaction (ORR) in HClO than FeN without micropore underneath and commercial Pt/C. Both theoretical calculation and electronic structure characterization imply that d-FeN endows central Fe with medium spin (t e ), which provides a spin channel for electron transition compared with FeN with low spin. This leads to the facile formation of the singlet state of oxygen-containing species from triplet oxygen during the ORR, thus showing faster kinetics than FeN. This work provides an in-depth understanding of spin tuning on SMAs for advanced energy catalysis.
Download full-text PDF |
Source |
---|---|
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC9249949 | PMC |
http://dx.doi.org/10.1016/j.xinn.2022.100268 | DOI Listing |
Enter search terms and have AI summaries delivered each week - change queries or unsubscribe any time!