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Solvent Effects on the Enthalpy and Entropy of Activation for the Hydrolysis of β-Lactones

机译:溶剂对活化β-内酯水解的焓和熵的影响

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The hydrolysis of β-propiolactone and β-butyrolactone in binary water + dioxane mixtures was investigated by kinetic studies. The following conclusions were reached: First, β-propiolactone is more reactive than β-butyrolactone across the range of water + dioxane compositions. This observation was rationalized in terms of the electric charge flow caused by the β-butyrolactone’s methyl substituent. Second, hydrolysis of these lactones is essentially enthalpy controlled. Third, an increase in the dioxane percentage, which relaxes the intermolecular hydrogen bonds in the ordered structure of water, reduces the enthalpy of activation ΔH # and simultaneously increases the entropy of activation ΔS #(absolute value) for solvent compositions up to 60% dioxane. Fourth, plotting ΔH #/ΔS # against the solvent composition yields an N-shaped curve. This results is a consequence of the quadratic and cubic terms appearing in the expressions of ΔH # and ΔS # as functions of the solvent media composition. Fifth, an ABC classification was set up to characterize the behavior of ΔH #/ΔS # for the solvolysis of these lactones.
机译:通过动力学研究研究了二元水+二恶烷混合物中β-丙内酯和β-丁内酯的水解。得出以下结论:首先,在水+二恶烷组成范围内,β-丙内酯比β-丁内酯更具反应性。根据由β-丁内酯的甲基取代基引起的电荷流,此观察是合理的。第二,这些内酯的水解基本上是焓控制的。第三,二恶烷百分比的增加使水的有序结构中的分子间氢键松弛,降低了活化焓ΔH#,同时增加了活化熵ΔS# /ΔS#会产生N形曲线。该结果是在溶剂介质组成函数ΔH#和ΔS#的表达式中出现二次和三次项的结果。第五,建立ABC分类法以表征这些内酯的溶剂分解行为ΔH# /ΔS#

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