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首页> 外文期刊>New Journal of Chemistry >Simultaneous formation of non-oxidovanadium(iv) and oxidovanadium(v) complexes incorporating phenol-based hydrazone ligands in aerobic conditions
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Simultaneous formation of non-oxidovanadium(iv) and oxidovanadium(v) complexes incorporating phenol-based hydrazone ligands in aerobic conditions

机译:同时形成非氧化钒(IV)和氧化钒(V)复合物在有氧条件下掺入酚类腙配体

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摘要

A new family of non-oxidovanadium(iv) [V-IV(L)(2)] (1-4) complexes along with methoxy bonded oxidovanadium(v) [(VO)-O-V(L)(OCH3)] (5 and 6) and [(VO)-O-V(L)(OCH3)](2) (7 and 8) complexes have been synthesized by refluxing [(VO)-O-IV(aa)(2)] [aa(-) being the deprotonated form of acetylacetone (Haa)] with a family of hydrazone ligands (H2L1-4, general abbreviation H2L, obtained by the condensation of 2-aminobenzoylhydrazide with 2-hydroxyacetophenone and its 5-substituted derivatives) using laboratory grade methanol as a solvent in the presence of air in similar to 30% yield. The DFT calculated changes in Gibbs free energy (Delta G), enthalpy (Delta H) and internal energy (Delta E) for the reaction to form complexes 1-4 in methanol: 2H(2)L + [(VO)-O-IV(aa)(2)] + 1/4O(2) + CH3OH -> [V-IV(L)(2)] + 2Haa + CH3OH + 1/4O(2) are on average similar to 10, similar to 5 and similar to 14 kcal mol(-1) respectively, while these values for the reaction in methanol to form complexes 5-8: 2H(2)L + [(VO)-O-IV(aa)(2)] + 1/4O(2) + CH3OH -> [(VO)-O-V(L)(OCH3)] + H2L + 2Haa + 1/2H(2)O are on average similar to-16, similar to-20 and similar to-12 kcal mol(-1) respectively, suggesting that the formation of 1-4 is not thermodynamically feasible through this method. In practice, however, these complexes are also formed probably due to their very low solubility in methanol along with complexes 5-8. The complexes were characterized by analytical and spectral methods. The structures of the H2L2 and H2L3 ligands and complexes 3 and 5-8 were determined by X-ray diffraction. Complexes 1-4 display quasi-reversible one-electron oxidation and reduction peaks in the potential windows of 0.66-0.70 and -0.22 to -0.39 V respectively while complexes 5-8 exhibit quasi-reversible one-electron reduction peaks in the 0.15-0.22 V region. The EPR spectral parameters indicate that the odd electron in complexes 1-4 is present in the d(xy) orbital, a suggestion which is also supported by a DFT study. The substituents in the aryloxy ring of the hydrazone ligands exhibited a significant effect on lambda(max) for the LMCT transition, A(||), E-1/2, E-SOMO/E-HOMO and E-LUMO of the complexes. Complexes 1, 3, and 5-7 showed a wide range of toxicity in a dose dependent manner against lung cancer cells and they kill the cells through apoptosis. The binding ability of the complexes with CT DNA has been determined by a fluorescence emission study and the binding constant value obtained by this method was supported by a molecular docking study.
机译:新的非氧化钒(IV)[V-IV(1)](2)](1-4)配合物以及甲氧基键合氧化钒(V)[(VO)-OV(L)(OCH3)](5通过回流[(VO)-O-IV(AA)(2)] [AA( - 4)(2)] [AA( - 4)(2)] [AA( - 4)(2)(2)] [AA( - 作为一种含有腙配体(H2L1-4,通过用2-羟基苯甲酰苯肼和其5-取代的衍生物的2-氨基苯甲酰肼和其5-取代的衍生物的缩合而获得的乙酰丙酮(HAA)的乙酰丙酮(HEA)的乙酰丙酮(H2L1-4)的缩合形式。在空气存在下的溶剂类似于30%的产率。 DFT计算Gibbs自由能量(Delta G),焓(Delta H)和内能量(Delta E)的变化,以在甲醇中形成复合物1-4:2H(2)L + [(VO)-O- IV(AA)(2)] + 1 / 4O(2)+ CH 3 OH - > [V-IV(1)(2)] + 2HAA + CH 3 OH + 1 / 4O(2)平均值与10相似,类似于10 5分别和类似于14kcal(-1),而这些值在甲醇中反应形成复合物5-8:2H​​(2)L + [(VO)-O-IV(AA)(2)] + 1 / 4O(2)+ CH 3 OH - > [(VO)-OV(1)(OCH3)] + H 2L + 2HAA + 1 / 2H(2)O平均相似至-16,类似于-20,类似于20 -12 kcal mol(-1)分别通过该方法形成1-4的形成不是热力学上可行的。然而,在实践中,这些配合物也是由于它们在甲醇中非常低的溶解度以及配合物5-8而形成。通过分析和光谱方法表征复合物。通过X射线衍射测定H 2L 2和H 2L3配体和复合物3和5-8的结构。分别在0.66-0.70和-0.22至-0.39V的潜在窗口中显示器1-4显示准可逆的单电子氧化和减少峰,而复合物5-8表现出0.15-0.22的准可逆一电子减少峰值V地区。 EPR光谱参数表示复合物1-4中的奇数电子在D(XY)轨道中存在,这是一种由DFT研究支持的建议。腙配体的芳氧基环中的取代基对LMCT过渡的Lambda(Max)具有显着影响,A(||),E-1/2,e-Somo / E-Homo和复合物的E-lemo 。复合物1,3和5-7显示抗肺癌细胞的剂量依赖性方式的广泛毒性,并且它们通过凋亡杀死细胞。通过CT DNA的复合物的结合能力已经通过荧光发射研究确定,通过该方法获得的结合常数由分子对接研究负载。

著录项

  • 来源
    《New Journal of Chemistry》 |2020年第9期|共17页
  • 作者单位

    Ramakrishna Mission Vivekananda Centenary Coll Post Grad Dept Chem Kolkata 700118 India;

    Jadavpur Univ Dept Chem Kolkata 700032 India;

    Jadavpur Univ Dept Chem Kolkata 700032 India;

    Natl Univ Singapore Dept Mech Engn 9 Engn Dr 1 Singapore 117576 Singapore;

    Univ Calcutta Dept Bot 35 Ballygunge Circular Rd Kolkata 700019 India;

    Univ Calcutta Dept Bot 35 Ballygunge Circular Rd Kolkata 700019 India;

    Columbia Univ Dept Pathol &

    Cell Biol New York NY USA;

    Columbia Univ Herbert Irving Comprehens Canc Ctr 1130 St Nicholas Ave New York NY 10032 USA;

    Univ Reading Dept Chem POB 224 Reading RG6 6AD Berks England;

    Ramakrishna Mission Vivekananda Centenary Coll Post Grad Dept Chem Kolkata 700118 India;

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  • 正文语种 eng
  • 中图分类 化学;
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