Albrahim Malik A, Shrotri Abhijit, Unocic Raymond R, Hoffman Adam S, Bare Simon R, Karim Ayman M
Department of Chemical Engineering, Virginia Polytechnic Institute and State University, Blacksburg, Virginia, 24060, USA.
Institute for Catalysis, Hokkaido University Kita ku, Sapporo, Hokkaido, 001-0021, Japan.
Angew Chem Int Ed Engl. 2023 Oct 26;62(44):e202308002. doi: 10.1002/anie.202308002. Epub 2023 Sep 19.
Understanding the dynamic structural evolution of supported metal clusters under reaction conditions is crucial to develop structure reactivity relations. Here, we followed the structure of different size Rh clusters supported on Al O using in situ/operando spectroscopy and ex situ aberration-corrected electron microscopy. We report a dynamic evolution of rhodium clusters into thermally stable isolated single atoms upon exposure to oxygen and during CO oxidation. Rh clusters partially disperse into single atoms at room temperature and the extent of dispersion increases as the Rh size decreases and as the reaction temperature increases. A strong correlation is found between the extent of dispersion and the CO oxidation kinetics. More importantly, dispersing Rh clusters into single atoms increases the activity at room temperature by more than two orders of magnitude due to the much lower activation energy on single atoms (40 vs. 130 kJ/mol). This work demonstrates that the structure and reactivity of small Rh clusters are very sensitive to the reaction environment.
了解负载型金属簇在反应条件下的动态结构演变对于建立结构-反应性关系至关重要。在此,我们使用原位/操作光谱和非原位像差校正电子显微镜跟踪了负载在Al₂O₃上不同尺寸Rh簇的结构。我们报道了铑簇在暴露于氧气和CO氧化过程中动态演变为热稳定的孤立单原子。Rh簇在室温下部分分散为单原子,且分散程度随着Rh尺寸减小和反应温度升高而增加。发现分散程度与CO氧化动力学之间存在很强的相关性。更重要的是,由于单原子上的活化能低得多(40对130 kJ/mol),将Rh簇分散为单原子在室温下将活性提高了两个多数量级。这项工作表明,小Rh簇的结构和反应性对反应环境非常敏感。