Investigation of hydrogen spillover in atomically dispersed metal on WO 3 for selective hydrogenation
作者:Yu Sun, Jie Gan, Bing Du, You Wang, Jieyi Yin, Sai Zhang · 发表于:AIChE Journal · 年份:2025 · DOI:10.1002/aic.18749 · 被引用次数:8 · 研究领域:Catalytic Processes in Materials Science、Hydrogen Storage and Materials、Catalysis and Hydrodesulfurization Studies
Abstract Optimizing kinetic barriers of hydrogen spillover for selective hydrogenation on supported catalysts with dual‐active sites faces a significant challenge due to inherent contradiction between H 2 activation and *H transformation from metal to support. Herein, the adsorption energy of *H ( E ad (H)) on metal has been demonstrated as a viable descriptor for understanding hydrogenation on the WO 3 surface with dual‐active sites of single‐atom metals and oxygen vacancies. Theoretical simulations rationalize the optimized value of E ad (H) of −2.49 eV for these dual‐active sites. Furthermore, the absolute value (|Δ E ad (H)|) between E ad (H) and −2.49 eV was calculated to directly explore the catalytic activity of M 1 /NR‐WO 3 . Among them, the Pt 1 /NR‐WO 3 catalysts with the lowest |Δ E ad (H)| exhibited the weakened *H adsorption and enabled efficient H 2 activation, resulting in a TOF value of 170,480 h −1 and >99.9% selectivity for the hydrogenation of p ‐chloronitrobenzene to p ‐chloroaniline. These findings provide new insights into the hydrogen spillover‐promoted selective hydrogenation.