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Stability prediction of Cu2+, Ni2+ and Zn2+ N-salicylidene-aminoacidato complexes by models based on connectivity index 3 χ v

机译:基于连通性指数3χv的模型预测Cu2 +,Ni2 +和Zn2 + N-水杨基-氨基酸复合物的稳定性

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This paper presents models for the estimation of stability constants (K 1 and β 2) of nickel(II), copper(II) and zinc(II) mono- and bis-complexes with 5 Schiff bases (salicylideneglycine, salicylidenealanine, salicylideneserine, salicylidenephenylalanine, and salicylidenetyrosine). The models were based on the molecular-graph theory and valence molecular connectivity index of the 3rd order, 3χv , derived from it. Univariate linear models were developed for each metal separately, while in the common models for two and three metals, the indicator variable, In, was introduced. The standard error of models for the log K 1 constant was less than 0.12, while for log β 2 models, the S.E. did not exceed 0.14.
机译:本文提出了具有5个席夫碱(水杨基甘氨酸,水杨基亚丙氨酸,水杨基神经氨酸,水杨基亚苯丙氨酸)的镍(II),铜(II)和锌(II)单和双配合物的稳定常数(K 1和β2)的估算模型。 ,以及水杨基内基酪氨酸)。这些模型基于分子图论和从中推导的三阶价分子连接指数3χv。分别为每种金属开发了单变量线性模型,而在两种和三种金属的通用模型中,引入了指标变量In。对数K 1常数的模型的标准误差小于0.12,而对数β2常数的模型的标准误差为S.E.不超过0.14。

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