不同反应条件下2-乙酰吡啶氨基胍与Cu(II)的反应

IF 1 4区 化学 Q4 CHEMISTRY, MULTIDISCIPLINARY Journal of The Serbian Chemical Society Pub Date : 2023-01-01 DOI:10.2298/jsc230707060k
Marijana Kostic, Nikola Radnovic, Marko Rodic, Holló Barta, Ljiljana Vojinovic-Jesic, Mirjana Radanovic
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引用次数: 0

摘要

氨基胍衍生物因其具有抗病毒、抗菌、镇痛、抗氧化、抗癌等多种生物活性而成为研究的热点。它们与不同金属的配合物也被研究,其中许多也显示出显著的生物活性。此外,一些配合物表现出良好的光致发光性能,可用于制备光电子器件。据此,本文描述了2-乙酰吡啶氨基胍(L)与铜(II)配合物的合成、理化、结构和热表征。Cu(II)与L在不同反应条件下得到三种不同组成的配合物。通过改变所使用的去质子化剂的碱度强度,证明了希夫碱可以以中性或单阴离子形式配位。在吡啶存在下,得到配位聚合物,而在氨/醋酸锂存在下,两种不同的单体配合物结晶。确定了它们的物理化学和热性质,以及分子和晶体结构。
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Reactions of 2-acetylpyridine aminoguanidine with Cu(II) under different reaction conditions
Aminoguanidine derivatives are the focus of research because of their various biological activities, such as antiviral, antibacterial, analgesic, antioxidant, and anticancer. Their complexes with different metals are also examined and many of them show significant biological activity, too. Besides, some of the complexes show good photoluminescent properties and are used for the preparation of photoelectronic devices. In accordance, the synthesis, physicochemical, structural, and thermal characterization of the complexes of 2-acetylpyridine aminoguanidine (L) with copper(II) is described here. Under different reaction conditions, Cu(II) with L gives three complexes of different compositions. By varying the strength of basicity of the deprotonating agent used, it was proven here that the Schiff base could be coordinated in neutral or monoanionic form. In the presence of pyridine, a coordination polymer is obtained, while in the presence of ammonia/lithium acetate two different monomeric complexes were crystallized. Their physicochemical and thermal properties, as well as molecular and crystal structure, are determined.
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来源期刊
CiteScore
1.80
自引率
0.00%
发文量
76
审稿时长
1 months
期刊介绍: The Journal of the Serbian Chemical Society -JSCS (formerly Glasnik Hemijskog društva Beograd) publishes articles original papers that have not been published previously, from the fields of fundamental and applied chemistry: Theoretical Chemistry, Organic Chemistry, Biochemistry and Biotechnology, Food Chemistry, Technology and Engineering, Inorganic Chemistry, Polymers, Analytical Chemistry, Physical Chemistry, Spectroscopy, Electrochemistry, Thermodynamics, Chemical Engineering, Textile Engineering, Materials, Ceramics, Metallurgy, Geochemistry, Environmental Chemistry, History of and Education in Chemistry.
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