首页> 外文期刊>Russian Journal of General Chemistry >Investigation of coordination ability of Mn(II), Fe(III), Co(II), Ni(II), and Cu(II) with metronidazole, the antiprotozoal drug, in alkaline media: Synthesis and spectroscopic studies
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Investigation of coordination ability of Mn(II), Fe(III), Co(II), Ni(II), and Cu(II) with metronidazole, the antiprotozoal drug, in alkaline media: Synthesis and spectroscopic studies

机译:Mn(II),Fe(III),Co(II),Ni(II)和Cu(II)与核苷酸中甲硝唑,碱性药物,碱性介质中的核苷酸:合成和光谱研究的协调能力调查

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摘要

Mn(II), Fe(III), Co(II), Ni(II), and Co(II) complexes of metronidazole drug (Met) were synthesized in alkaline media at 60A degrees C and characterized on the basis of elemental, molar conductance, magnetic, spectral (FT-IR, Raman, ESR, and solid reflectance), and thermal analyses. Metronidazole formed stable 1 : 2 molar ratio complexes with Mn(II), Co(II), Ni(II), and Cu(II). Fe(III) complex was obtained with 1 : 3 molar ratio. IR spectra of the solid complexes indicated that the Met dug behaved as a monodentate chelate through the oxygen atom of deprotonated-OH ethanol terminal group. According to the physical spectroscopic parameters (Racah repulsion, crystal field splitting, and nepheloauxetic) and magnetic susceptibility, the complexes had an octahedral geometry, except Cu(II) complex that was square planar. Thermo gravimetric and differential thermo gravimetric analyses (TG-DTG) techniques demonstrated thermal degradation mechanisms of Met free drug and its metal complexes. Activation thermodynamic parameters, Delta E*, Delta H*, Delta S*, and Delta G*, were calculated for thermal decomposition steps of Met and its metal complexes.
机译:在60A℃下在碱介质中合成甲硝唑药物(Met)的Mn(II),Fe(III),CO(II),Ni(II)和CO(II)络合物,并在元素,摩尔的基础上表征电导,磁,光谱(FT-IR,拉曼,ESR和固体反射率)和热分析。甲硝唑形成稳定的1:2摩尔比配合Mn(II),CO(II),Ni(II)和Cu(II)。用1:3摩尔比获得Fe(III)复合物。固体复合物的IR光谱表明,相对于通过去质子化-OH乙醇末端基团的氧原子表现为单齿螯合物。根据物理光谱参数(RACAH排斥,晶体场分裂和肾上腺素)和磁性敏感性,复合物具有八面体几何形状,除Cu(II)复合物是方形平面的。 Thermo重量谱和差分热量重量分析(TG-DTG)技术表现出MET Free药物及其金属配合物的热降解机制。激活热力学参数,三角形E *,Delta H *,Delta S *和Delta G *,用于满足MET及其金属配合物的热分解步骤。

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