Synthesis and Biological Activity of Dysprosium Lanthanide Complex with Azo Ligand

Kamaran Basheer Hussein ,, Sangar Sabah Sabir
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 Objective: To Dysprosiumchloride was selected as a metallic salt, coordination complex of Dy(III) with TAR ligand were prepared, Dysprosium metal ion get chelates as it react with TAR. It’s been recognized for along interval of time that the azo group has the ability to develop a coordinate fitting with metal ions. Dy(III) complex was identified via FT-IR , UV-Vis. spectroscopy and measuring the electrical properties. The purpose of the research applied in the field of dyes
 Patients and Methods: The complex [Dy(TAR)2].Cl have been characterized by elemental analysis (CHN). TAR ligand and its complex were further studied using 1H-NMR and 13C-NMR techniques. Spectra of this complex shows that the TAR compound behaves as a tridentate manner via (ONN) atoms .
 Results: The antibacterial activity of free ligand and so Dy(III) complex were investigated .The composition of the chelate was found to be 1:2 (M:L) .Dy(III) metal ion was six coordinate the analytical results of the complex show the ratio of stoichiometry and complex showed octahedral geometry around metal ion .
 Conclusion: All results indicates that the Dy complex have the chemical formula [Dy(TAR)2].Cl The overall number of points of attachment to the central element is termed the coordination number.The study of biological activity shows that the complex is more effective than the ligand.","PeriodicalId":11202,"journal":{"name":"Diyala Journal of Medicine","volume":"403 ","pages":"0"},"PeriodicalIF":0.0000,"publicationDate":"2023-10-31","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"Diyala Journal of Medicine","FirstCategoryId":"1085","ListUrlMain":"https://doi.org/10.26505/djm.v25i1.1029","RegionNum":0,"RegionCategory":null,"ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"","JCRName":"","Score":null,"Total":0}
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Abstract

Background: The present study describes complex reaction between 4-(2-Thiazolylazo)resorcinol (TAR) and Dy(III) metal ion. The TAR compound is known to form coloured chelates with various lanthanide metal ions . Researches done in the field of azo complexes is relatively little. Objective: To Dysprosiumchloride was selected as a metallic salt, coordination complex of Dy(III) with TAR ligand were prepared, Dysprosium metal ion get chelates as it react with TAR. It’s been recognized for along interval of time that the azo group has the ability to develop a coordinate fitting with metal ions. Dy(III) complex was identified via FT-IR , UV-Vis. spectroscopy and measuring the electrical properties. The purpose of the research applied in the field of dyes Patients and Methods: The complex [Dy(TAR)2].Cl have been characterized by elemental analysis (CHN). TAR ligand and its complex were further studied using 1H-NMR and 13C-NMR techniques. Spectra of this complex shows that the TAR compound behaves as a tridentate manner via (ONN) atoms . Results: The antibacterial activity of free ligand and so Dy(III) complex were investigated .The composition of the chelate was found to be 1:2 (M:L) .Dy(III) metal ion was six coordinate the analytical results of the complex show the ratio of stoichiometry and complex showed octahedral geometry around metal ion . Conclusion: All results indicates that the Dy complex have the chemical formula [Dy(TAR)2].Cl The overall number of points of attachment to the central element is termed the coordination number.The study of biological activity shows that the complex is more effective than the ligand.
偶氮配体镧系镝配合物的合成及其生物活性
背景:本研究描述了4-(2-噻唑偶氮)间苯二酚(TAR)与金属离子Dy(III)的络合反应。已知TAR化合物与各种镧系金属离子形成有色螯合物。偶氮配合物领域的研究相对较少。 目的:选择氯化镝作为金属盐,制备Dy(III)与TAR配体的配位配合物,使金属镝离子与TAR反应得到螯合物。很长一段时间以来,人们已经认识到偶氮基团具有与金属离子形成配位的能力。Dy(III)配合物经FT-IR、UV-Vis鉴定。光谱学和测量电学特性。本研究目的在染料领域的应用 患者和方法:配合物[Dy(TAR)2]。用元素分析(CHN)对氯离子进行了表征。利用1H-NMR和13C-NMR技术进一步研究了TAR配体及其配合物。该配合物的光谱表明,该TAR化合物通过(ONN)原子表现为三叉戟方式。结果:对游离配体及其配合物Dy(III)的抑菌活性进行了研究,发现配合物的组成为1:2 (M:L), Dy(III)金属离子为六坐标,配合物的化学计量比与配合物呈围绕金属离子的八面体结构。结论:所有结果表明Dy配合物具有化学式[Dy(TAR)2]。与中心元件相连的点的总数称为配位数。生物活性研究表明,该配合物比配体更有效。
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