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A solvolysis model for 2-chloro-2-methyladamantane based on the linear solvation energy approach

机译:基于线性溶剂化能量法的2-氯-2-甲基金刚烷的溶剂分解模型

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Solvolysis/dehydrolialogenation rates of 2-chloro-2-methyladamantane (CMA) in 15 hydrogen-bond acidic and/or basic solvents are studied. The rates of reaction in these solvents have been correlated with the solvation equation developed by Kamlet, Abraham, and Taft. The linear solvation energy relationship (LSER) derived from this study is given by the following equation: log k = -5.409 + 2.219pi(1)(*) + 2.505alpha(1) - 1.823beta(1) where pi(1)(*), alpha(1), and beta(1) are the solvation parameters that measure the solvent dipolarity/polarizability, hydrogen-bond acidity (electrophilicity), and hydrogen-bond basicity (nucleophilicity). A high correlation coefficient (r = 0.996, SD = 0.191) was achieved. The cavity term, which includes the Hildebrand parameter for solvent cohesive energy density, 611, was not found to be statistically significant for this reaction substrate. The resulting equation allows calculated rates of reaction in other solvents and provides insight into the reaction pathway. In a previously reported correlation for another tertiary chloride, tert-butyl chloride (TBC), the coefficients for alpha(1), and pi(1)(*) are significantly larger and the coefficient for delta(H)(2) is statistically I H significant. In addition, the coefficient for beta(1) in the TBC correlation is positive, rather than negative, indicating that the transition states for TBC and CMA are significantly different. These results demonstrate why the uses of simple solvolytic correlation methods may be invalid even for comparisons of similar type substrates, e.g., tertiary chlorides. Also, these results provide confidence in the use of multiple linear regression analysis for predicting solvolytic rates in additional solvents.
机译:研究了15种氢键酸性和/或碱性溶剂中2-氯-2-甲基金刚烷(CMA)的溶剂分解/脱氢化速率。这些溶剂中的反应速率已与Kamlet,Abraham和Taft开发的溶剂化方程式相关。由以下研究得出的线性溶剂化能量关系(LSER)由以下公式给出:log k = -5.409 + 2.219pi(1)(*)+ 2.505alpha(1)-1.823beta(1)其中pi(1) (*),alpha(1)和beta(1)是可测量溶剂双极性/极化性,氢键酸度(亲电性)和氢键碱性(亲核性)的溶剂化参数。获得高相关系数(r = 0.996,SD = 0.191)。对于该反应底物,没有发现包含溶剂内聚能密度的Hildebrand参数611的空腔项在统计学上不显着。所得方程式允许计算出在其他溶剂中的反应速率,并提供对反应路径的了解。在先前报道的另一种叔氯氯化叔丁基(TBC)的相关性中,α(1)和pi(1)(*)的系数明显更大,而delta(H)(2)的系数在统计上IH重大。此外,TBC相关性中的beta(1)系数为正,而不是负,表明TBC和CMA的过渡态存在显着差异。这些结果证明了为什么即使对于相似类型的底物例如叔氯的比较,简单溶剂分解相关方法的使用也可能无效。同样,这些结果为使用多元线性回归分析预测其他溶剂中的溶剂分解速率提供了信心。

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