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首页> 外文期刊>Angewandte Chemie >Dual Metal Active Sites in an Ir-1/FeOx Single-Atom Catalyst: A Redox Mechanism for the Water-Gas Shift Reaction
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Dual Metal Active Sites in an Ir-1/FeOx Single-Atom Catalyst: A Redox Mechanism for the Water-Gas Shift Reaction

机译:IR-1 / Feox单原子催化剂中的双金属活性位点:用于水气移反应的氧化还原机制

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摘要

Herein, we report a theoretical and experimental study of the water-gas shift (WGS) reaction on Ir-1/FeOx single-atom catalysts. Water dissociates to OH* on the Ir-1 single atom and H* on the first-neighbour O atom bonded with a Fe site. The adsorbed CO on Ir-1 reacts with another adjacent O atom to produce CO2, yielding an oxygen vacancy (O-vac). Then, the formation of H-2 becomes feasible due to migration of H from adsorbed OH* toward Ir-1 and its subsequent reaction with another H*. The interaction of Ir-1 and the second-neighbouring Fe species demonstrates a new WGS pathway featured by electron transfer at the active site from Fe3+-O...Ir2+-O-vac to Fe2+-O-vac...Ir3+-O with the involvement of O-vac. The redox mechanism for WGS reaction through a dual metal active site (DMAS) is different from the conventional associative mechanism with the formation of formate or carboxyl intermediates. The proposed new reaction mechanism is corroborated by the experimental results with Ir-1/FeOx for sequential production of CO2 and H-2.
机译:在此,我们报告了IR-1 / Feox单原子催化剂对水气移(WGS)反应的理论和实验研究。水在与Fe网站粘合的第一邻邻O原子上的IR-1单个原子和H *上的OH * OH *。 IR-1上的吸附CO与另一种相邻的O原子反应以产生CO 2,产生氧空位(O-VAC)。然后,由于H从吸附的OH *朝向IR-1的迁移和其随后与另一H *反应,形成H-2的形成变得可行。 IR-1和第二邻居Fe种的相互作用证明了通过Fe3 + -O ... IR2 + -O-VAC的Electon Site在Fe2 + -O-Vac中的电子转移特征的新WGS途径... IR3 + -O随着O-VAC的参与。通过双金属活性位点(DMA)的WGS反应的氧化还原机制与具有甲酸盐或羧基中间体的形成的常规关联机制不同。所提出的新反应机制通过实验结果得到证实,IR-1 / Feox用于连续产生CO 2和H-2。

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