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首页> 外文期刊>European journal of pharmaceutical sciences >A modification of the Hammett equation for predicting ionisation constants of p-vinyl phenols.
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A modification of the Hammett equation for predicting ionisation constants of p-vinyl phenols.

机译:Hammett方程的一种修正,用于预测对乙烯基苯酚的电离常数。

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摘要

Currently there are several compounds used as drugs or studied as new chemical entities, which have an electron withdrawing group connected to a vinylic double bond in a phenolic or catecholic core structure. These compounds share a common feature--current computational methods utilizing the Hammett type equation for the prediction of ionisation constants fail to give accurate prediction of pK(a)'s for compounds containing the vinylic moiety. The hypothesis was that the effect of electron-withdrawing substituents on the pK(a) of p-vinyl phenols is due to the delocalized electronic structure of these compounds. Thus, this effect should be additive for multiple substituents attached to the vinylic double bond and quantifiable by LFER-based methods. The aim of this study was to produce an improved equation with a reduced tendency to underestimate the effect of the double bond on the ionisation of the phenolic hydroxyl. To this end a set of 19 para-substituted vinyl phenols was used. The ionisation constants were measured potentiometrically, and a training set of 10 compounds was selected to build a regression model (r2 = 0.987 and S.E. = 0.09). The average error with an external test set of six compounds was 0.19 for our model and 1.27 for the ACD-labs 7.0. Thus, we have been able to significantly improve the existing model for prediction of the ionisation constants of substituted p-vinyl phenols.
机译:目前,有几种化合物被用作药物或被研究为新的化学实体,它们具有一个吸电子基团,该吸电子基团与酚或儿茶酚核心结构中的乙烯基双键相连。这些化合物具有一个共同的特征-当前使用Hammett型方程预测电离常数的计算方法无法准确预测含乙烯基部分的化合物的pK(a)。假设是吸电子取代基对对乙烯基苯酚的pK(a)的影响是由于这些化合物的电子结构离域。因此,这种效应对于与乙烯基双键相连的多个取代基是加和的,并且可以通过基于LFER的方法进行定量。这项研究的目的是产生一个改进的方程,其减少了低估双键对酚羟基电离作用的趋势。为此目的,使用了一组19种对位取代的乙烯基苯酚。用电位计测量电离常数,并选择10种化合物的训练集以建立回归模型(r2 = 0.987,S.E。= 0.09)。对于我们的模型,六个化合物的外部测试集的平均误差为0.19,对于ACD-labs 7.0,则为1.27。因此,我们已经能够显着改善现有模型,用于预测取代对乙烯基苯酚的电离常数。

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