Coordination Tunes Selectivity: Two‐Electron Oxygen Reduction on High‐Loading Molybdenum Single‐Atom Catalysts
The University of Adelaide · Henan University · +2 more institutions
Abstract
Abstract Single‐atom catalysts (SACs) have great potential in electrocatalysis. Their performance can be rationally optimized by tailoring the metal atoms, adjacent coordinative dopants, and metal loading. However, doing so is still a great challenge because of the limited synthesis approach and insufficient understanding of the structure–property relationships. Herein, we report a new kind of Mo SAC with a unique O,S coordination and a high metal loading over 10 wt %. The isolation and local environment was identified by high‐angle annular dark‐field scanning transmission electron microscopy and extended X‐ray absorption fine structure. The SACs catalyze the oxygen reduction reaction (ORR) via a 2 e − pathway…
Citation impact
- FWCI
- 20.57
- Percentile
- 100%
- References
- 59
Authors
8Topics & keywords
- Catalysis
- Electrocatalyst
- Molybdenum
- Selectivity
- Chemistry
- Electrochemistry
- Atom (system on chip)
- Metal
- Clean water and sanitation
Funding
- UDU.S. Department of EnergyAward: SC0012704
- NCNational Computational Infrastructure
- AGAustralian Government
- ASAustralian Synchrotron
- OOOffice of ScienceAwards: SC0012704, DE-SC0012704
- ARAustralian Research CouncilAward: DP160104866, LP160100927, DP190103472 and FL170100154
- NCNational Cancer Institute
- BEBasic Energy SciencesAwards: DE-SC0012704, SC0012704
- BNBrookhaven National LaboratoryAward: SC0012704