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A combined experimental and theoretical approach to investigate the structure, magnetic properties and DNA binding affinity of a homodinuclear Cu(ii) complex

机译:一种探讨同源核(II)复合物的结构,磁性和DNA结合亲和力的组合实验和理论方法

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摘要

Herein, an antiferromagnetic homodinuclear Cu(ii) complex of propanolamine, [Cu-2(pa)(2)(OAc)(2)] (1), containing an acetate auxiliary was crystallized out. The complex was characterized by spectral, X-ray crystallographic, magnetic and DFT/TD-DFT studies. Single crystal X-ray data reveal that 1 crystallizes in the triclinic system with the P1 space group, and each Cu(ii) ion adopts a four-coordinated square planar geometry with the [N,O,O,O] donor set. The two [Cu(CH3COO)(pa)](+) units are connected through two alkoxy groups of the pa(-) ligand belonging to each unit; this results in the formation of a binuclear Cu(ii) system with the bridging Cu1-O1-Cu2 angle = 103.81 degrees and the intradimer CuCu distance = 3.022 angstrom. The experimental results obtained via the binding experiments of the present complex with DNA are in line with the theoretical results. The auxiliary acetate group and the bridged pa(-) ligand facilitate the binding tendency of the complex to DNA in the minor groove region (as confirmed by docking analysis), thereby forming stronger H-bonding interactions. The easy transfer of an electron from the HOMO of DNA to the LUMO of the complex further supports the existence of a stronger binding interaction, as confirmed by the DFT analysis. Temperature variable magnetic studies (SQUID measurements) revealed the presence of strong antiferromagnetic interactions (J = -222.4(2) cm(-1)) between two Cu(ii) nuclei in a molecule, and the presence of these interactions was further supported by theoretical studies. The larger CuCu distance and Cu-O-Cu angle are the factors behind the antiferromagnetic exchange between two Cu(ii) centers. Thus, the present study establishes that the fine tuning of structures in transition metal complexes can result in the formation of magnetically and biologically important molecules for future applications.
机译:在此,含有乙酸盐助剂的丙二醇胺,[Cu-2(PA)(2)(2)(2)(2)(2)(2))(2)(2)](1)的反铁磁性均核核Cu(II)复合物结晶。该复合物的特征在于光谱,X射线晶体,磁性和DFT / TD-DFT研究。单晶X射线数据显示,1用P1空间组结晶,每个Cu(II)离子采用具有[N,O,O,O]供体组的四个协调的方形平面几何形状。将两个[Cu(CH3COO)(PA)](+)单位通过属于每个单元的PA( - )配体的两种烷氧基;这导致具有桥接Cu1-O1-Cu2角度= 103.81度和电镀器CUCU距离= 3.022埃·3.022埃的二核Cu(II)系统的形成。通过具有DNA的本体复合物的结合实验获得的实验结果与理论结果一致。辅助醋酸盐基团和桥接PA( - )配体促进络合物在较小槽区域中的DNA的结合趋势(通过对接分析证实),从而形成更强的H键合相互作用。通过DFT分析证实,从DNA的HONO的亮度转移到复合物的Lumo的升高,进一步支持较强的结合相互作用。温度可变磁性研究(鱿鱼测量)揭示了分子中的两个Cu(II)核之间的强抗铁磁性相互作用(J = -222.4(2)cm(-1)),并进一步支持这些相互作用的存在理论研究。较大的CUCU距离和Cu-O-Cu角度是两个Cu(II)中心之间的反铁磁交换背后的因素。因此,本研究确定过渡金属配合物中结构的微调可以导致磁性和生物学上重要的分子用于未来的应用。

著录项

  • 来源
    《New Journal of Chemistry》 |2019年第19期|共9页
  • 作者单位

    Aligarh Muslim Univ Dept Chem Aligarh 202002 Uttar Pradesh India;

    Aligarh Muslim Univ Dept Chem Aligarh 202002 Uttar Pradesh India;

    Cent Univ Haryana Dept Chem Mahendergarh 123031 Haryana India;

    Cent Univ Haryana Dept Chem Mahendergarh 123031 Haryana India;

    Aligarh Muslim Univ Dept Chem Aligarh 202002 Uttar Pradesh India;

    Aligarh Muslim Univ Dept Appl Chem ZHCET Aligarh 202002 Uttar Pradesh India;

    Jamia Millia Islamia Dept Chem New Delhi India;

    Jamia Millia Islamia Dept Chem New Delhi India;

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  • 正文语种 eng
  • 中图分类 化学;
  • 关键词

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