Antil Neha, Chauhan Manav, Akhtar Naved, Kalita Rahul, Manna Kuntal
Department of Chemistry, Indian Institute of Technology Delhi, Hauz Khas, New Delhi 110016, India.
J Am Chem Soc. 2023 Mar 22;145(11):6156-6165. doi: 10.1021/jacs.2c12042. Epub 2023 Mar 10.
Acetic acid is an industrially important chemical, produced mainly via carbonylation of methanol using precious metal-based homogeneous catalysts. As a low-cost feedstock, methane is commercially transformed to acetic acid via a multistep process involving energy-intensive methane steam reforming, methanol synthesis, and, subsequently, methanol carbonylation. Here, we report a direct single-step conversion of methane to acetic acid using molecular oxygen (O) as the oxidant under mild conditions over a mono-copper hydroxyl site confined in a porous cerium metal-organic framework (MOF), Ce-UiO-Cu(OH). The Ce-UiO MOF-supported single-site copper hydroxyl catalyst gave exceptionally high acetic acid productivity of 335 mmolg in 96% selectivity with a Cu TON up to 400 at 115 °C in water. Our spectroscopic and theoretical studies and controlled experiments reveal that the conversion of methane to acetic acid occurs via oxidative carbonylation, where methane is first activated at the copper hydroxyl site via σ-bond metathesis to afford Cu-methyl species, followed by carbonylation with in situ-generated carbon monoxide and subsequent hydrolysis by water. This work may guide the rational design of heterogeneous abundant metal catalysts for the activation and conversion of methane to acetic acid and other valuable chemicals under mild and environmentally friendly reaction conditions.
乙酸是一种具有重要工业价值的化学品,主要通过使用贵金属基均相催化剂的甲醇羰基化反应来生产。甲烷作为一种低成本原料,通过多步过程商业转化为乙酸,该过程包括能源密集型的甲烷蒸汽重整、甲醇合成以及随后的甲醇羰基化反应。在此,我们报道了在温和条件下,以分子氧(O)作为氧化剂,在一种限制于多孔铈基金属有机框架(MOF)Ce-UiO-Cu(OH)中的单铜羟基位点上,甲烷直接一步转化为乙酸。在水中115°C的条件下,Ce-UiO MOF负载的单位点铜羟基催化剂表现出极高的乙酸生产率,达到335 mmol/g,选择性为96%,铜的转化数高达400。我们的光谱和理论研究以及对照实验表明,甲烷转化为乙酸是通过氧化羰基化反应进行的,其中甲烷首先在铜羟基位点通过σ键复分解被活化,生成铜甲基物种,随后与原位生成的一氧化碳进行羰基化反应,再被水水解。这项工作可能会指导在温和且环境友好的反应条件下,合理设计用于甲烷活化和转化为乙酸及其他有价值化学品的非均相富金属催化剂。