由(对氨基苄胺)及其金属配合物衍生的新型偶氮希夫碱配体(4Cl-2DIBP)的合成和光谱鉴定

None Wafaa Jumaah Imran, None Ibtihal Kadhim Kareem, None Ruba Riyadh Jaafar
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引用次数: 0

摘要

以对氨基苄胺与4,5-二苯基咪唑缩合,再与5-氯-2-羟基苯甲醛缩合为原料,合成了4-氯-2-((4-((4,5-二苯基- 1h -咪唑-2-基)重氮基)苄基亚氨基)甲基)苯酚(4Cl-2DIBP)杂环配体。不同的分析和表征技术,包括(质量,1HNMR, FT-IR和UV-Vis。光谱学和碳离子元素分析)在新制备配体研究中的应用。该配体与Co (II)、Ni (II)、Cu (II)、Zn (II)、Cd (II)和Hg (II)制备了一系列新型固体金属配合物,并用上述技术对配合物进行了表征。除去所制备的一些固体金属配合物的质量和1H-NMR波谱,并利用火焰原子吸收光谱法测定所制备配合物中金属离子的百分比,还研究了在1 × 10-3 M浓度的实验室温度下溶解在DMSO中的金属配合物的磁化率和摩尔电导率。研究结果表明,Co (II)、Ni (II)、Cu (II)、Zn (II)、Cd (II)和Hg(II)等新型偶氮席夫碱配体的配位位点均通过咪唑环的氮和偶氮基的氮。电子光谱和磁测量数据预测了配合物的八面体结构。所有配合物均表现出非电解质性质。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Synthesis and Spectral identifications of new azo – Schiff base ligand(4Cl-2DIBP) derived from (para-aminobenzylamine) with its some metallic complexes
The New Heterocyclic ligand 4-chloro-2-(((4-((4,5-diphenyl-1H-imidazol-2-yl) diazenyl ) benzyl)imino)methyl) phenol (4Cl-2DIBP) was prepared from the condensation of para-aminobenzylamine with 4,5-diphenyl imidazole, followed by the condensation of the resulting compound with 5- chloro-2- hydroxy benzaldehyde. Different analytical and characterization techniques including (Mass,1HNMR, FT-IR and UV-Vis. spectroscopy and C.H.N elemental analysis) in the investigation of Newly prepared ligand. A series of Novel solid metal complexes of this ligand with Co (II), Ni (II), Cu (II), Zn ((II), Cd (II), and Hg (II) were prepared and all complexes were characterization by techniques above, excluding the Mass and the 1H-NMR spectroscopy of some prepared solid metal complexes and the use of flame atomic absorption spectroscopy to determine the percentages of metal ions in the prepared complexes also studied the magnetic susceptibility and molar conductivity of the metal complexes dissolved in DMSO at 1 × 10-3 M concentration laboratory temperature. The results of this studies showed that the coordination sites for the new Azo-Schiff base ligand with Co (II), Ni (II), Cu (II), Zn ((II) , Cd (II) and Hg(II) were to be through nitrogen of the imidazole ring, and the nitrogen of azo group,. The Electronic spectral and magnetic measurement data predict octahedral structure of the complexes. All complexes showed that Non-electrolytes properties.
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