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首页> 外文期刊>Journal of Inclusion Phenomena and Macrocyclic Chemistry >Cucurbit[5]uril-mediated electrochemical hydrogenation of alpha,beta-unsaturated ketones
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Cucurbit[5]uril-mediated electrochemical hydrogenation of alpha,beta-unsaturated ketones

机译:葫芦[5] URIL介导的α,β-不饱和酮的电化学氢化

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摘要

The potential of cucurbit[5]uril to be used as inverse phase transfer catalyst in electrocatalytic hydrogenation of alpha,beta-unsaturated ketones is illustrated. The interaction behavior among isophorone and cucurbit[5]uril was also investigated using cyclic voltammetry and UV/vis absorption spectroscopy. The results concerning to both techniques revealed an enhancement in the intensity of the absorption peak and also in the current cathodic peak of isophorone in presence of cucurbit[5]uril. This achievement is related to the increase of the isophorone solubility in the medium being an indicative of a host-guest complex formation. The electrochemical hydrogenation of isophorone using cucurbit[5]uril was more efficient than others well-stablish methodologies. Regarding to (R)-(+)-pulegone and (S)-(+)-carvone, the use of cucurbit[5]uril leads to an increase of 17% and 9%, on average, respectively, in the yields when compared to the control reaction. The efficiency of selective C=O bond hydrogenation of 1-acetyl-1-cyclohexene was evaluated. The presence of cucurbit[5]uril increased by 12% the hydrogenations yields of 1-acetyl-1-cyclohexene when compared to the control reaction. In this sense, these results open up an opportunity to carry out electrocatalytic reactions within the cucurbit[5]uril environment.
机译:图示了葫芦[5]尿嘧啶的电位作为α-不饱和酮的电催化氢化的反相转移催化剂。还使用循环伏安法和UV / Vis吸收光谱研究了异佛酮和葫芦[5] URIL之间的相互作用行为。关于两种技术的结果表明,在葫芦[5]尿嘧啶存在下,吸收峰的强度以及在异佛酮的电流阴极峰值中的增强。这种成就与培养基中的异佛酮溶解度的增加是宿主客户复杂地层的指示。使用葫芦酮的电化学氢化使用葫芦[5] URIN比其他富有稳定的方法更有效。关于(r) - (+) - 瓜克酮和(+) - (+) - 克隆,葫芦(乌尔)的使用分别在产量下平均同时增加17%和9%与对照反应相比。评价选择性C = O键氢化的1-乙酰基-1-环己烯的效率。与对照反应相比,葫芦[5]尿嘧啶的存在增加了1-乙酰基-1-环己烯的氢化产率。从这个意义上讲,这些结果开辟了在葫芦环境中进行电催化反应的机会。

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