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首页> 外文期刊>Macromolecular chemistry and physics >Poly(amido-amines)s with novel molecular architecture: Synthesis and thermodynamic studies of protonation and metal [Cu(II), Zn(II)] ion complexes
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Poly(amido-amines)s with novel molecular architecture: Synthesis and thermodynamic studies of protonation and metal [Cu(II), Zn(II)] ion complexes

机译:具有新型分子结构的聚(酰胺基胺):质子化和金属[Cu(II),Zn(II)]离子配合物的合成和热力学研究

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New short chain poly(amido-amine)s (SPAAs) carrying amido- and tertiary amino groups along the polymer chain separated by a single methylene group have been synthesized by polycondensation of N,N'-bis-(2-chloro- or bromo-acetyl)-piperazine with N,N'-dimethyl-hexamethylenediamine or 2-methyl-piperazine. The basicity of the SPAAs was lower compared to the PAAs obtained previously by polyaddition of bis-amines to bis-acrylamides. The shortening of the methylene chain from two (PAAs) to one (SPAAs) reduced the logK values of both tertiary amino groups present in the repeating unit due to inductive effects. Furthermore, the shortening resulted in basicity constants, that depend on pH, with respect to the first step of protonation. The real changes in enthalpy (-Delta H-0) of protonation of the SPAAs are greater than those found for PAAs due to the fact that protonated nitrogens and amido C=O groups are closer, favouring the formation of five-member rings. Five-member rings are formed also with metal(II) ions, such as Cu(II) and Zn(II). giving complex species more stable than those of PAAs, with higher log beta and larger -Delta H-0 values. Low entropy changes (Delta S-0) and molar absorption coefficient (epsilon) values support strongly a well ordered chelate structure involving three condensed five-membered rings in an octahedral distorted geometry. [References: 33]
机译:通过N,N'-双-(2-氯-或溴代)的缩聚反应合成了新的短链聚(酰胺胺)(SPAA),其沿聚合物链带有一个亚甲基分隔开一个酰胺基和叔氨基-乙酰基)哌嗪与N,N'-二甲基-六亚甲基二胺或2-甲基-哌嗪与先前通过将双胺加成双丙烯酰胺获得的PAA相比,SPAA的碱性较低。由于感应效应,亚甲基链从两个(PAA)缩短为一个(SPAA)减少了重复单元中存在的两个叔氨基的logK值。此外,对于质子化的第一步,缩短导致了依赖于pH的碱性常数。由于质子化的氮原子和酰胺基C = O基团更近,有利于五元环的形成,因此SPAA的质子化焓(-ΔH-0)的真实变化要大于PAA的变化。五元环也由金属(II)离子形成,例如Cu(II)和Zn(II)。使得复杂物种比PAA更加稳定,具有更高的log beta和更大的-Delta H-0值。低的熵变(ΔS-0)和摩尔吸收系数(ε)值强烈支持一个良好的有序螯合结构,该结构包含八面体扭曲几何结构中的三个稠密五元环。 [参考:33]

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