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Generation of methylene by the liquid phase oxidation of isobutene with nitrous oxide

机译:用二氮氧化物的异丁烯液相氧化产生亚甲基

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The application of nitrous oxide as an alternative oxidant provides new opportunities for selective oxidation of olefins. Here, we studied for the first time the thermal oxidation of isobutene with N2O in the liquid phase. The study revealed that the oxidation proceeds via 1,3-dipolar cycloaddition of N2O to the C=C bond by two routes forming unstable 4,5-dihydro-[1,2,3]-oxadiazole intermediates. The main route (the contribution of 91%) includes the addition of the N2O oxygen to the second carbon atom in olefin. In this case, the oxadiazole decomposes with the C-C bond cleavage yielding acetone, methylene (:CH2), and N-2. The methylene then readily reacts with isobutene and benzene (solvent). The minor route involves the addition of the N2O oxygen to the first carbon atom and the oxadiazole decomposition with a hydrogen shift leading to isobutanal and N-2. The main distinctive feature of the studied reaction is the formation of methylene in high yield. (C) 2018 Elsevier Ltd. All rights reserved.
机译:氧化亚氮作为替代氧化剂的应用为烯烃选择性氧化提供了新的机会。在这里,我们首次研究了在液相中与N 2 O的异丁烯的热氧化。该研究表明,通过形成不稳定的4,5-二氢 - [1,2,3] - 羰基唑中间​​体的两条途径,通过1,3-偶极环加入至C = C键进行氧化通过1,3-偶极环加入至C = C键进行。主要途径(91%的贡献)包括将N2O氧气加入烯烃中的第二个碳原子。在这种情况下,氧基唑与产生丙酮,亚甲基(:CH2)和N-2的C-C键裂解分解。然后亚甲基易于与异丁烯和苯(溶剂)反应。小型路径涉及将N2O氧气加入第一碳原子,并具有导致异丁醛和N-2的氢气转变的恶化的氧唑分解。研究的主要特征是高产率的形成亚甲基。 (c)2018年elestvier有限公司保留所有权利。

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