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◆ ACS Sustainable Chemistry & Engineering2026-04-06· Bimetallic strip

Loading Ultrafine PdIr Clusters on Amine-Functionalized ZEO-1 Zeolite to Boost Catalytic Activity for Formic Acid Dehydrogenation at Room Temperature

Meng Zhang, Shiyu Wan, Dongyan Xu, Peng Lu, Valentin Valtchev

原始摘要(英文原文)· Original abstract
Anchoring and stabilizing finely dispersed Pd-based alloy nanoparticles on porous substrates holds a highly promising strategy for developing efficient heterogeneous catalysts for hydrogen release from formic acid (FA, HCOOH), a unique liquid organic hydrogen carrier due to its high hydrogen content, low toxicity, ambient stability, and versatile obtainability. Herein, an extra-large-pore zeolite, ZEO-1, was synthesized and subsequently amine-functionalized using 3-aminopropyltriethoxysilane to obtain an NH 2 -ZEO-1 substrate. Ultrafine bimetallic PdIr clusters were then immobilized on its surface via a facile coreduction method. The as-prepared PdIr/NH 2 -ZEO-1 features abundant surface-exposed active sites, enhanced CO resistance, favorable FA adsorption ability, and improved H 2 desorption kinetics in the FA dehydrogenation reaction. As a result, optimized Pd 0.9 Ir 0.1 /NH 2 -ZEO-1 exhibits an initial turnover frequency of 2610 h –1 at 298 K. Kinetic isotope effect measurements demonstrate that C–H bond cleavage is the rate-determining step, and isotopic labeling confirms the participatory role of H 2 O in the catalytic cycle. Further mechanistic studies identify HCOO* as a dominant surface intermediate over both Pd/NH 2 -ZEO-1 and PdIr/NH 2 -ZEO-1 catalysts.
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Loading Ultrafine PdIr Clusters on Amine-Functionalized ZEO-1 Zeolite to Boost Catalytic Activity for Formic Acid Dehydrogenation at Room Temperature — 科研速览 Science Skim