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Liquid-phase oxidation of alkylaromatics to aromatic ketones with molecular oxygen over a Mn-based metal-organic framework

机译:用Mn基金属 - 有机骨架在分子氧中对芳族酮烷基芳烃的液相氧化

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摘要

Liquid-phase oxidation of alkylaromatics with molecular O-2 was examined using a microporous Mn-based metal-organic framework (Mn-MOF-74). Mn-MOF-74 consisting of trimeric Mn clusters and 2,5-dihydroxyterephthalate (dhtp) linkers exhibits superior catalytic activity with good ketone selectivity compared to conventional oxide-supported Mn catalysts without showing any lengthy induction period. Combined analyses by means of XRD, FE-SEM, N-2 physisorption and Mn K-edge XAFS reveal that the superior catalytic performance is attributed to the inherently-formed Mn(III)(2)(dhtp) moieties embedded in the Mn-MOF-74 framework rather than structural factors associated with the MOF. The catalyst is reusable over multiple catalytic runs along with retaining its original catalytic activity due to the ability of the dhtp ligand to stabilize active Mn(III) atoms. Owing to high activity, reusability and nontoxicity, Mn-MOF-74 can offer a simple, inexpensive and efficient protocol for the oxidation of some important alkylaromatics, such as ethylbenzene and diphenylmethane to produce the corresponding aromatic ketones.
机译:使用微孔Mn类金属 - 有机骨架(MN-MOF-74)进行了检查用分子O-2烷基芳族化合物的液相氧化。的Mn-MOF-74组成的三聚体的Mn簇和2,5- dihydroxyterephthalate(DHTP)接头表现出优良的催化具有良好的选择性酮活性相比于传统的氧化物负载的Mn催化剂没有表现出任何冗长诱导期。通过XRD,FE-SEM,N-2物理吸附和Mn K边缘XAFS的手段联合分析揭示出优良的催化性能归因于固有形成的Mn(III)(2)(DHTP)部分嵌入在所述MN- MOF-74框架,而不是与相关联的MOF的结构因素。所述催化剂是具有保持其原始催化活性沿着可重复使用在多个催化运行由于DHTP配体的稳定活性的Mn(III)原子的能力。由于活性高,可重用性和无毒性,锰MOF-74可以提供一种简单,廉价和有效的协议,用于一些重要的烷基芳烃,如乙苯和二苯甲烷,以产生相应的芳香酮的氧化。

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