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首页> 外文期刊>Chemistry: A European journal >Photochemically initiated oxidative carbon-carbon bond-cleavage reactivity in chlorodiketonate Ni ~(II) complexes
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Photochemically initiated oxidative carbon-carbon bond-cleavage reactivity in chlorodiketonate Ni ~(II) complexes

机译:氯二酮酸镍〜(II)配合物的光化学引发的氧化碳-碳键裂解反应

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Three mononuclear Ni ~(II) complexes containing a 2-chloro-1,3-diketonate ligand and supported by the 6-Ph _2TPA chelate, as well as analogues that lack the 2-chloro substituent on the β-diketonate ligand, have been prepared and characterized. Upon irradiation at 350 nm under aerobic conditions, complexes containing the 2-chloro-substituted ligands undergo reactions to generate products resulting from oxidative cleavage, α-cleavage, and radical-derived reactions involving the 2-chloro-1,3-diketonate ligand. Mechanistic studies suggest that the oxidative cleavage reactivity, which leads to the production of carboxylic acids, is a result of the formation of superoxide, which occurs through reaction of reduced nickel complexes with O _2. The presence of the 2-chloro substituent was found to be a prerequisite for oxidative carbon-carbon bond-cleavage reactivity, as complexes lacking this functional group did not undergo these reactions following prolonged irradiation. The approach toward investigating the oxidative reactivity of metal β-diketonate species outlined herein has yielded results of relevance to the proposed mechanistic pathways of metalloenzyme-catalyzed β-diketonate oxidative cleavage reactions.
机译:含有2-氯-1,3-二酮酮配体并由6-Ph _2TPA螯合物支持的三种单核Ni〜(II)配合物,以及在β-二酮酮配体上缺少2-氯取代基的类似物。准备和表征。在好氧条件下于350 nm照射后,含有2-氯取代的配体的配合物会发生反应,生成由2-氯-1,3-二酮配体的氧化裂解,α裂解和自由基衍生的反应产生的产物。机理研究表明,导致羧酸生成的氧化裂解反应性是超氧化物形成的结果,这是通过还原的镍络合物与O _2反应而发生的。发现2-氯取代基的存在是氧化碳-碳键-裂解反应性的先决条件,因为缺乏该官能团的配合物在长时间辐射后不会发生这些反应。本文概述的研究金属β-二酮酸金属物种的氧化反应性的方法产生了与所提出的金属酶催化的β-二酮酸金属氧化裂解反应的机理相关的结果。

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