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◆ ACS Catalysis2026-03-19· Propane

Zeolite Y-Encapsulated Pd Single Atoms and Clusters: Unlocking Stepwise Synergy for Low-Temperature Propane Oxidation

Tianyao He, Yuzhen Zhang, Gan Li, Xiang Tu, Fengqing Zhuo, Jian Ji, F Yu, Guobo Li, Wenming Liu, Lu Wei, Jiguang Deng, Weili Dai, Honggen Peng

原始摘要(英文原文)· Original abstract
We report the rational design and precise construction of Y zeolite-encapsulated Pd catalysts featuring coexisting single atoms and clusters (Pd 1+ n @Y) that enable the efficient and low-temperature total oxidation of propane. Fine tuning of Pd loading and synthesis conditions in a PVP-assisted one-pot hydrothermal approach affords controllable confinement of dual active sites (isolated Pd single atoms and clusters). Catalytic evaluations reveal that Pd 1+ n @Y exhibits a T 90 of only 265 °C, significantly outperforming the single-site counterparts (Pd 1 @Y and Pd n @Y). Combining density functional theory (DFT) calculations with in situ diffuse reflectance infrared Fourier transform spectroscopy (DRIFTS) studies elucidates a stepwise synergistic mechanism wherein Pd single atoms preferentially activate the C–H bond in propane to form alkyl intermediates, while Pd clusters facilitate O 2 activation and C–C bond cleavage to complete oxidation. This work establishes a robust “single atom–cluster” synergistic paradigm for designing advanced catalysts for the abatement of light alkanes.
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Zeolite Y-Encapsulated Pd Single Atoms and Clusters: Unlocking Stepwise Synergy for Low-Temperature Propane Oxidation — 科研速览 Science Skim