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首页> 外文期刊>Molecular crystals and liquid crystals >Catalytic Oxidation of Ethylene Glycol by Dioxygen in Alkaline Medium. The New Example of One-Stage Oxidative Cleavage of C—C Bond
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Catalytic Oxidation of Ethylene Glycol by Dioxygen in Alkaline Medium. The New Example of One-Stage Oxidative Cleavage of C—C Bond

机译:碱性介质中双氧催化氧化乙二醇。碳键一阶段氧化裂解的新例子

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摘要

Reaction of low temperature oxidations of ethylene glycol (EG) by molecular oxygen in the presence of salts of bivalent copper and alkali both in water and in waterless solutions was investigated. It was found that at low (close to room) temperatures for the process carrying out in waterless solutions the basic product of EG oxidation is formic acid. Rising the temperature from 290-315 K to 350-360 K or carrying out the reaction in water-containing solutions leads to sharp change of a direction of reaction. EG in these conditions is oxidized with primary formation of glycolic acids salts. The change of direction of reaction is connected, apparently, with decrease stability of chelate complexes of Cu~(2+)-ions with dianionic form of EG. The mechanism of glycolic acids formation includes, possibly, a stage of two-electronic reduction of O_2 in reaction of dioxygen with monoanionic forms of EG, coordinated on Cu~(2+)-centers.
机译:研究了在水和无水溶液中二价铜和碱金属盐的存在下,分子氧对乙二醇(EG)的低温氧化反应。已经发现,在无水溶液中进行的过程的低温(接近室温)下,EG氧化的基本产物是甲酸。将温度从290-315 K升高到350-360 K或在含水溶液中进行反应会导致反应方向的急剧变化。在这些条件下,EG被氧化形成乙醇酸盐。显然,反应方向的变化与Cu〜(2 +)-离子与EG的二价阴离子形式的螯合物的稳定性降低有关。乙醇酸形成的机理可能包括在双氧与单阴离子形式的EG(在Cu〜(2 +)-中心配位)的反应中O_2发生两电子还原的阶段。

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