氢甲酰化
铑
催化作用
烯烃纤维
化学
选择性
乙烯
氧化物
环氧乙烷
光化学
纳米技术
材料科学
有机化学
共聚物
聚合物
作者
Marcos G. Farpón,Wilson Henao,Philipp N. Pleßow,Eva Andrés,Raúl Arenal,Carlo Marini,Giovanni Agostini,Felix Studt,Gonzalo Prieto
标识
DOI:10.1002/anie.202214048
摘要
A frontier challenge in single-atom (SA) catalysis is the design of fully inorganic sites capable of emulating the high reaction selectivity traditionally exclusive of organometallic counterparts in homogeneous catalysis. Modulating the direct coordination environment in SA sites, via the exploitation of the oxide support's surface chemistry, stands as a powerful albeit underexplored strategy. We report that isolated Rh atoms stabilized on oxygen-defective SnO2 uniquely unite excellent TOF with essentially full selectivity in the gas-phase hydroformylation of ethylene, inhibiting the thermodynamically favored olefin hydrogenation. Density Functional Theory calculations and surface characterization suggest that substantial depletion of the catalyst surface in lattice oxygen, energetically facile on SnO2 , is key to unlock a high coordination pliability at the mononuclear Rh centers, leading to an exceptional performance which is on par with that of molecular catalysts in liquid media.
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