甲醇
甲烷
催化作用
部分氧化
材料科学
甲烷厌氧氧化
无机化学
金属有机骨架
化学工程
合成气
金属
甲烷氧化偶联
氧化还原
化学
有机化学
吸附
冶金
工程类
作者
Bunyarat Rungtaweevoranit,Ali M. Abdel‐Mageed,Pongtanawat Khemthong,Srisin Eaimsumang,Khetpakorn Chakarawet,Teera Butburee,Benny Kunkel,Sebastian Wohlrab,Kittipong Chainok,Jakkapop Phanthasri,Suttipong Wannapaiboon,Saran Youngjan,Theerada Seehamongkol,Sarawoot Impeng,Kajornsak Faungnawakij
标识
DOI:10.1021/acsami.3c03310
摘要
Catalytic partial oxidation of methane presents a promising route to convert the abundant but environmentally undesired methane gas to liquid methanol with applications as an energy carrier and a platform chemical. However, an outstanding challenge for this process remains in developing a catalyst that can oxidize methane selectively to methanol with good activity under continuous flow conditions in the gas phase using O2 as an oxidant. Here, we report a Fe catalyst supported by a metal-organic framework (MOF), Fe/UiO-66, for the selective and on-stream partial oxidation of methane to methanol. Kinetic studies indicate the continuous production of methanol at a superior reaction rate of 5.9 × 10-2 μmolMeOH gFe-1 s-1 at 180 °C and high selectivity toward methanol, with the catalytic turnover verified by transient methane isotopic measurements. Through an array of spectroscopic characterizations, electron-deficient Fe species rendered by the MOF support is identified as the probable active site for the reaction.
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