Synthesis, characterization and crystallographic determination of symmetrical Schiff bases and their Zn(II) metal complexes

IF 1.6 4区 化学 Q3 CHEMISTRY, INORGANIC & NUCLEAR
Taghreed M. A. Jazzazi, Tareq M. A. Al-Shboul, Mohammad El-khateeb, Hayato Moriyama, Yukihiro Yoshida, Hiroshi Kitagawa
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引用次数: 0

Abstract

Two new tetradentate symmetrical Schiff bases derived from 2,2’-diamino-4,4’-dimethyl-1,1’-biphenyl or its dibromo substituted analog and 3,5-diiodosalicylaldehyde were synthesized. The reactions of these Schiff bases with zinc acetate generated the corresponding Zn(II)-complexes in which the zinc atom is bonded through the two azoimine nitrogen atoms in addition to the two oxygen atoms of the deprotonated hydroxyl groups. The Schiff bases and their Zn(II) complexes were characterized using UV-Vis, 1H- and 13C-NMR, IR spectroscopy and elemental analysis. The structures of the two Schiff bases as well as the two zinc(II) complexes were further approved by single crystal X-ray analysis.

Abstract Image

Abstract Image

对称席夫碱及其锌(II)金属配合物的合成、表征和晶体学测定
由 2,2'-diamino-4,4'-dimethyl-1,1'-biphenyl 或其二溴取代类似物和 3,5- 二碘代水杨醛合成了两种新的四价对称席夫碱。这些希夫碱与乙酸锌反应生成了相应的 Zn(II)- 复合物,其中锌原子除了通过去质子化羟基的两个氧原子键合外,还通过两个偶氮亚胺氮原子键合。利用紫外-可见光谱、1H-和 13C-NMR 光谱、红外光谱以及元素分析对希夫碱及其锌(II)络合物进行了表征。通过单晶 X 射线分析,进一步确定了两种希夫碱和两种锌(II)配合物的结构。
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来源期刊
Transition Metal Chemistry
Transition Metal Chemistry 化学-无机化学与核化学
CiteScore
3.60
自引率
0.00%
发文量
32
审稿时长
1.3 months
期刊介绍: Transition Metal Chemistry is an international journal designed to deal with all aspects of the subject embodied in the title: the preparation of transition metal-based molecular compounds of all kinds (including complexes of the Group 12 elements), their structural, physical, kinetic, catalytic and biological properties, their use in chemical synthesis as well as their application in the widest context, their role in naturally occurring systems etc. Manuscripts submitted to the journal should be of broad appeal to the readership and for this reason, papers which are confined to more specialised studies such as the measurement of solution phase equilibria or thermal decomposition studies, or papers which include extensive material on f-block elements, or papers dealing with non-molecular materials, will not normally be considered for publication. Work describing new ligands or coordination geometries must provide sufficient evidence for the confident assignment of structural formulae; this will usually take the form of one or more X-ray crystal structures.
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