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Interactions of atrazine with transition metal ions in aqueous media: experimental and computational approach

机译:r去津与过渡金属离子在水性介质中的相互作用:实验和计算方法

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摘要

Transition metal ions have their own significances and utility. Externally applied pesticides may alter the bioavailability of these metal ions to plants through the coordinating ability of these pesticides with metal ions. In current study a series of metal complexes containing atrazine (Atr) group(s) attached to metal(II) (M) frame, with the formula; [M(Atr)n.xH2O.yCl] (where M = Mn, Fe, Co, Ni, Cu or Zn; n = 1 or 2; x = 1–4; y = 1–2), have been synthesized for the first time to check the interactions of atrazine with transition metal ions. More importantly, all the complexes were synthesized at neutral pH in aqueous medium. The major differences among the FTIR spectra were observed between 3,700–2,800 and 1,800–1,350 cm−1. On the basis of FTIR, CHN and computational study, it was observed that Mn, Ni and Cu formed complexes in 1:2 and Fe, Co and Zn in 1:1. The obtained results were supported by 3D molecular modeling using GAMESS computations as a package of ChemBio3D Ultra14 program. The FTIR spectral analysis and 3D molecular modeling suggests that the Atr can show coordination through the nitrogen (in between two side chains) of ring as well as nitrogen (non steric amine) of side chain with different metal ions.
机译:过渡金属离子具有其自身的意义和实用性。外用农药可能通过这些农药与金属离子的配伍能力而改变这些金属离子对植物的生物利用度。在当前的研究中,一系列的金属配合物包含与金属(II)(M)骨架相连的at去津(Atr)基团,其化学式为: [M(Atr)n.xH2O.yCl](其中M = Mn,Fe,Co,Ni,Cu或Zn; n = 1或2; x = 1-4; y = 1-2)已合成首次检查at去津与过渡金属离子的相互作用。更重要的是,所有配合物都是在水性介质中于中性pH下合成的。 FTIR光谱之间的主要区别是在3700-2800和1800-1350 cm -1 之间。在FTIR,CHN和计算研究的基础上,观察到Mn,Ni和Cu在1:2形成络合物,Fe,Co和Zn在1:1形成络合物。使用GAMESS计算作为ChemBio3D Ultra14程序的软件包,通过3D分子建模来支持获得的结果。 FTIR光谱分析和3D分子建模表明,Atr可以通过环的氮(在两个侧链之间)以及具有不同金属离子的侧链的氮(非空间胺)显示出配位关系。

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