首页> 外文期刊>Journal of the American Chemical Society >FLASH PHOTOLYSIS OF 2,2,6-TRIMETHYL-4H-1,3-DIOXIN-4-ONE IN AQUEOUS SOLUTION - HYDRATION OF ACETYLKETENE AND KETONIZATION OF ACETOACETIC ACID ENOL
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FLASH PHOTOLYSIS OF 2,2,6-TRIMETHYL-4H-1,3-DIOXIN-4-ONE IN AQUEOUS SOLUTION - HYDRATION OF ACETYLKETENE AND KETONIZATION OF ACETOACETIC ACID ENOL

机译:2,2,6-三甲基-4H-1,3-二恶英-4-酮在水溶液中的光解-乙酰酮的水合和乙酸烯醇的酮化

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Acetylketene was produced by flash photolysis of 2,2,6-trimethyl-4H-1,3-dioxin-4-one in aqueous solution, and rates of hydration of the ketene to acetoacetic acid enol and subsequent ketonization of the enol were measured in this solvent across the acidity range [H+] = 1 - 10(-13) M. Acetylketene proved to be a remarkably reactive substance, undergoing uncatalyzed hydration with the rate constant k = 1.5 x 10(6) s(-1), some 10(4) times more rapidly than ketene itself; the acetylketene hydration reaction was also catalyzed weakly by hydroxide ion but not by hydrogen ion. Ketonization of acetoacetic acid enol was much slower with rates in the millisecond to second range. The reaction showed a complex rate profile that could be interpreted in terms of rate-determining carbon protonaton of the carboxylate-ionized form of the enol in the acid region and rate-determining carbon protonation of the doubly ionized carboxylate-enolate form in the basic region. Analysis of the data provided the acidity constant pQ(a) = 4.05 for the carboxylic acid group of the enol and pQ(a)(E) = 13.18 for its enolic hydroxyl group. (These acidity constants are concentration quotients referring to an ionic strength of 0.10 M). Combination of the present results with information on the enolization of acetoacetic acid available from the literature gave K-E = 5.6 x 10(-3), pK(E) = 2.25, as an estimate of the keto-enol equilibrium constant.
机译:乙炔酮是通过水溶液中2,2,6-三甲基-4H-1,3-二恶英-4-酮的快速光解法制得的,并测量了烯酮水合为乙酰乙酸烯醇的速率和随后的烯酮酮化反应。该溶剂的酸度范围为[H +] = 1-10(-13)M。乙酰基乙烯酮被证明是一种非常活泼的物质,经历了未经催化的水合,速率常数k = 1.5 x 10(6)s(-1),有些比乙烯酮本身快10(4)倍;乙酰酮水合反应也被氢氧根离子而不是氢离子弱催化。乙酰乙酸烯醇的酮化速度要慢得多,速率在毫秒到秒的范围内。反应显示出复杂的速率分布,其可以通过酸区中烯醇的羧酸盐离子化形式的速率确定碳质子和碱性区域中双离子化羧酸盐-烯酸酯形式的速率确定碳质子来解释。 。数据分析提供了烯醇的羧酸基的酸度常数pQ(a)= 4.05,烯醇式羟基的pQ(a)(E)= 13.18。 (这些酸度常数是指离子强度为0.10 M的浓度商)。将本结果与可从文献中获得的有关乙酰乙酸烯醇化的信息相结合,得出K-E = 5.6 x 10(-3),pK(E)= 2.25,作为对酮-烯醇平衡常数的估计。

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