首页> 外文期刊>The Journal of Organic Chemistry >Determination of the p K a of Cyclobutanone: Br?nsted correlation of the general base-catalyzed enolization in aqueous solution and the effect of ring strain
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Determination of the p K a of Cyclobutanone: Br?nsted correlation of the general base-catalyzed enolization in aqueous solution and the effect of ring strain

机译:环丁酮的p K a的测定:水溶液中一般碱催化烯醇化和环应变影响的布朗斯台德相关性

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The induction of strain in carbocycles, thereby increasing the amount of s-character in the C-H bonds and the acidity of these protons, has been probed with regard to its effect on the rate constants for the enolization of cyclobutanone. The second-order rate constants for the general base-catalyzed enolization of cyclobutanone have been determined for a series of 3-substituted quinuclidine buffers in D2O at 25 °C, I = 1.0 M (KCl). The rate constants for enolization were determined by following the extent of deuterium incorporation (up to ~30% of the first α-proton) into the α-position, as a function of time. The observed pseudo-first-order rate constants correlated to the [basic form] of the buffer and yielded the second-order rate constants for the general base-catalyzed enolization of cyclobutanone for four tertiary amine buffers. A Br?nsted β-value of 0.59 was determined from the second-order rate constants determined. Comparison of the results for cyclobutanone to those previously reported for acetone and a 1-phenylacetone derivative, under similar conditions, indicated that the ring strain of the carbocycle appeared to have only a small effect on the general base-catalyzed rate constants for enolization. The similarity of the rate constants for the general base-catalyzed enolization of cyclobutanone to those determined for acetone allowed for an estimation of the limits of the rate constant for protonation of the enolate intermediate of cyclobutanone by the conjugate acid of 3-quinuclidinone (kBH = 5 × 108 -2 × 109 M-1 s-1). Combining the rate constants for deprotonation of cyclobutanone (kB) and protonation of the enolate of cyclobutanone (kBH) by 3-quinuclidinone and its conjugate acid, the pKa of the α-protons of cyclobutanone has been estimated to be pKa = 19.7-20.2.
机译:关于其对环丁酮烯醇化的速率常数的影响,已经探讨了在碳环中诱导应变,从而增加了C-H键中s-字符的数量和这些质子的酸度。在25°C,I = 1.0 M(KCl)的条件下,已确定了D2O中一系列3-取代的奎宁环烷缓冲液的一般碱催化环丁酮烯醇化的二级速率常数。随时间的变化,通过跟踪氘掺入α位的程度(最高第一个α-质子的〜30%)来确定烯醇化的速率常数。观察到的拟一级反应速率常数与缓冲液的[基本形式]相关,并为四个叔胺缓冲液产生了一般的碱催化环丁酮烯醇化反应的二级速度常数。由确定的二阶速率常数确定布朗斯台德β值为0.59。在类似条件下,将环丁酮的结果与先前报道的丙酮和1-苯基丙酮衍生物的结果进行比较,结果表明,碳环的环应变似乎对烯醇化的一般碱催化速率常数影响很小。一般的碱催化的环丁酮烯醇化速率常数与丙酮所测定的速率常数相似,从而可以估算3-丁环利酮的共轭酸环丁酮烯醇酸酯中间体的质子化速率常数的极限值(kBH = 5×108 -2×109 M-1 s-1)。结合环丁酮(kB)去质子化和环丁酮(kBH)烯醇化的速率常数和3-奎宁环酮及其共轭酸的质子化常数,环丁酮的α质子的pKa估计为pKa = 19.7-20.2。

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