Contrasting Atomically Dispersed Metal Catalysts Supported on CeO <i> <sub>x</sub> </i> Nanoislands with Various Ligand Environments Including Chloride
Abstract
Abstract Metals that are dispersed atomically on supports offer new and potentially valuable catalytic properties associated with their high atom efficiencies and opportunities for tuning their electronic properties by choice of the support and other ligands bonded to them. Herein, we report the synthesis of atomically dispersed Pt, Rh, and Ir anchored on CeO x nanoislands on a high‐area SiO 2 support. Synthesis from chloride‐containing metal salts gave metal complexes chemisorbed on the supported nanoislands, with Pt being prototypical and having a structure approximated as Pt 1 Cl 2 O 4 , as shown by X‐ray absorption spectroscopy and calculations at the level of density functional theory (DFT). Calcination converted the adsorbed species into a structure represented as Pt 1 O 6 , embedded in the CeO x lattice. The Pt 1 Cl 2 O 4 was observed to have a higher catalytic activity for CO oxidation than the chloride‐free, embedded Pt 1 O 6 species, and DFT results indicate the role of chloride in enhancing the catalytic activity of the isolated Pt, in contrast to its role as an inhibitor when Pt is present as nanoparticles. This work emphasizes the importance of the first coordination shell in controlling the catalytic properties of atomically dispersed noble metals.
Article Details
Authors (7)
Nan Zhang
Yizhen Chen
Key Laboratory of Bioinorganic and Synthetic Chemistry of Ministry of Education, Guangdong Basic Research Center of Excellence for Functional Molecular Engineering, School of Chemistry, IGCME
Xu Li
Chih‐Wen Pao
National Synchrotron Radiation Research Center (NSRRC) Hsinchu 300092 Taiwan
Jiankang Zhao
Hefei National Research Center for Physical Sciences at the Microscale
Bruce C. Gates
Department of Chemical Engineering
Jie Zeng
School of Chemistry & Chemical Engineering