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首页> 外文期刊>Bulletin of the Korean Chemical Society >A New Kaempferol-based Ru(II) Coordination Complex, Ru(kaem)Cl(DMSO)(3): Structure and Absorption-Emission Spectroscopy Study
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A New Kaempferol-based Ru(II) Coordination Complex, Ru(kaem)Cl(DMSO)(3): Structure and Absorption-Emission Spectroscopy Study

机译:一种新的基于Kaempferol的Ru(II)配合物Ru(kaem)Cl(DMSO)(3):结构和吸收发射光谱研究

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摘要

Recent interest in developing a new anticancer drug with low side effects has led to the study of the combination of two new anticancer drugs. Although both kaempferol (kaem) and Ru-based metal complexes have not been proven as effective drugs, their unique anticancer activities with reduced side effects have drawn our attention to the need for further studies on their potential in anticancer application. Herein, we report the synthesis, characterization, structure, and spectroscopic properties of a kaem-based Ru (II) complex, RuCl(kaem)(DMSO)(3) (1). Because of the presence of a catechol-like functional group in its dihydropyran ring, kaem can strongly bind to the Ru(II) metal center in a basic medium. The molecular structure of the complex was characterized by spectroscopic studies and X-ray crystal structure analysis. In addition, the complex forms a molecular dimer as a result of the cooperative effect of H-bonding and - stacking interactions. Moreover, the molecular dimer forms a ladder-like one-dimensional network structure by water mediated H-bonding that further extended into a three-dimensional packing structure. UV-Vis spectroscopy studies of the complex demonstrated the appearance of a strong metal to ligand charge transfer (MLCT) band in the visible region with strong fluorescence emission derived from the MLCT. Further studies are now in progress to demonstrate synergetic anticancer activity.
机译:对开发具有低副作用的新抗癌药的近期兴趣导致了对两种新抗癌药的组合的研究。尽管山奈酚(kaem)和Ru基金属络合物均未被证明是有效的药物,但其独特的抗癌活性和降低的副作用已引起我们的注意,需要进一步研究其在抗癌应用中的潜力。在这里,我们报告的合成,表征,结构和光谱性质的基于kaem的Ru(II)配合物,RuCl(kaem)(DMSO)(3)(1)。由于其二氢吡喃环中存在儿茶酚样官能团,kaem可以在碱性介质中牢固地结合到Ru(II)金属中心。通过光谱研究和X射线晶体结构分析来表征该配合物的分子结构。另外,由于H键和-堆积相互作用的协同作用,该络合物形成分子二聚体。此外,分子二聚体通过水介导的H键形成梯状的一维网络结构,该结构进一步扩展为三维堆积结构。对该复合物的UV-Vis光谱研究表明,在可见光区域出现了强金属到配体的电荷转移(MLCT)带,并从MLCT发出了强烈的荧光。现在正在进行进一步的研究以证明协同抗癌活性。

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