Please use this identifier to cite or link to this item: https://doi.org/10.1016/j.apcatb.2023.123285
Title: Compositional variations in highly active PtSn/Al<inf>2</inf>O<inf>3</inf> catalysts derived from molecular complexes
Authors: Xu, C
Tan, S
Tang, Y 
Xi, S
Yao, B
Wade, A
Zhao, B 
Lu, S 
Du, Y
Tian, M
He, C
Ma, L
Fu, X
Shi, J
Lu, J 
Howe, AGR 
Dai, S
Luo, G
He, Q 
Issue Date: 1-Feb-2024
Publisher: Elsevier BV
Citation: Xu, C, Tan, S, Tang, Y, Xi, S, Yao, B, Wade, A, Zhao, B, Lu, S, Du, Y, Tian, M, He, C, Ma, L, Fu, X, Shi, J, Lu, J, Howe, AGR, Dai, S, Luo, G, He, Q (2024-02-01). Compositional variations in highly active PtSn/Al2O3 catalysts derived from molecular complexes. Applied Catalysis B: Environmental 341 : 123285-123285. ScholarBank@NUS Repository. https://doi.org/10.1016/j.apcatb.2023.123285
Abstract: We investigated the industrially important PtSn/Al2O3 catalysts prepared with uniform particle sizes (∼ 1 nm) and varied compositions using molecular complexes of Pt(II) and Sn(II). Our best catalyst, with a Sn:Pt ratio of around 2, exhibited a high initial propylene productivity of about 1.1 mol C3H6 (g catalyst)−1 h−1. Elaborate electron microscopy studies revealed significant compositional variations in the catalyst, highlighting the practical challenges in achieving or confirming the theoretically predicted optimum Sn:Pt ratio. It is also found that the catalytic activities correlate well with the Pt dispersion, suggesting the structure-insensitive nature of the dehydrogenation reaction applies to these ultrasmall Pt-Sn nanoparticles. The presence of Pt-rich particles in the catalysts did not produce noticeable degradations in the reaction selectivity, indicating a wide composition range for Pt-Sn nanoparticles to be effective at the 1 nm size range. These findings emphasize the importance of detailed analysis of compositional distributions for understanding and optimizing nanoalloys.
Source Title: Applied Catalysis B: Environmental
URI: https://scholarbank.nus.edu.sg/handle/10635/247989
ISSN: 0926-3373
DOI: 10.1016/j.apcatb.2023.123285
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