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Molecular Active Sites in Heterogeneous Ir-La/C-Catalyzed Carbonylation of Methanol to Acetates

机译:异质Ir-La / C催化甲醇羰基化成乙酸的分子活性位点

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摘要

We report that when Ir and La halides are deposited on carbon, exposure to CO spontaneously generates a discrete molecular heterobimetallic structure, containing an Ir-La covalent bond that acts as a highly active, selective, and stable heterogeneous catalyst for the carbonylation of methanol to produce acetic acid. This catalyst exhibits a very high productivity of ~1.5 mol acetyl/mol Ir·s with >99% selectivity to acetyl (acetic acid and methyl acetate) without detectable loss in activity or selectivity for more than 1 month of continuous operation. The enhanced activity can be mechanistically rationalized by the presence of La within the ligand sphere of the discrete molecular Ir-La heterobimetallic structure, which acts as a Lewis acid to accelerate the normally rate-limiting CO insertion in Ir-catalyzed carbonylation. Similar approaches may provide opportunities for attaining molecular (single site) behavior similar to homogeneous catalysis on heterogeneous surfaces for other industrial applications.
机译:我们报告说,当Ir和La卤化物沉积在碳上时,暴露于CO会自发生成离散的分子异双金属结构,其中包含Ir-La共价键,该键充当甲醇的羰基化反应的高活性,选择性和稳定的非均相催化剂。产生乙酸。该催化剂显示出非常高的产率,约1.5 mol乙酰基/ mol Ir·s,对乙酰基(乙酸和乙酸甲酯)的选择性> 99%,连续运行1个月以上没有发现活性或选择性的损失。可以通过在离散的分子Ir-La异双金属结构的配体球体内存在La来机械地合理化增强的活性,该La充当路易斯酸来加速Ir催化的羰基化反应中通常限速的CO插入。相似的方法可能为获得分子(单位)行为提供机会,类似于在其他工业应用中在异质表面上进行均相催化。

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