A heterocyclic N'-(4-(diethylamino)-2-hydroxybenzylidene)-4-oxopiperidine-1-carbohydrazide Schiff base ligand and its metal complexes: Synthesis, structural characterization, thermal behavior, fluorescence properties, and biological activities

Gajanan Mahadu Dongare, A. Aswar
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引用次数: 1

Abstract

A new heterocyclic hydrazone Schiff base ligand, N'-(4-(diethylamino)-2-hydroxy benzylidene)-4-oxopiperidine-1-carbohydrazide, (H2L) was derived by a condensation reaction of 4-oxopiperidine-1-carbohydrazide with 4-(diethylamino)-2-hydroxybenz-aldehyde. The ligand reacts with chloride salts of chromium(III), manganese(II), iron(III), cobalt(II), nickel(II), copper(II) and zinc(II) to form metal complexes of [Cr(L)(Cl)(H2O)2], [Mn(HL)(Cl)(H2O)2], [Fe(L)(Cl)(H2O)2], [Co(HL)(Cl)(H2O)2], [Ni(HL)(Cl)(H2O)2], [Cu(HL)(Cl) (H2O)2], [Zn(L)(H2O)], respectively. The structure of the hydrazone ligand was confirmed by elemental analysis and spectroscopic techniques, viz., FT-IR, 1H NMR, 13C NMR, and LC-MS spectroscopy. The newly synthesized ligand behaves as a tridentate ONO donor towards Cr, Mn, Fe, Co, Ni, Cu, and Zn metal ions. The spectral, magnetic moment, and thermal data indicate the octahedral geometry for all metal complexes except for Zn, which has tetrahedral geometry with 1:1 stoichiometry (M:L). ESR study revealed that π-bonding covalency is much stronger than the σ-bonding with axial distortion in the structure. The molar conductivity data suggested the nonelectrolytic nature of the complexes. The powder X-ray diffraction patterns suggest the nanocrystalline nature of the compounds. The SEM micrograph of the ligand significantly differs from its Ni(II) complex indicating coordination of Ni(II) ion to the ligand. The intense fluorescence emitted in the region of λExcitation 521 to 524 nm due to the functional fluorophores of the ligand and its manganese (II), chromium(III), cobalt(II), and zinc(II) complexes. Various kinetic parameters such as Ea, ∆S, ∆H, and ∆G of various decomposition steps were calculated from TGA diagrams using Coats-Redfern method and the thermal stability order was found to be Cr < Fe < Co < Mn = Cu < Zn < Ni. The antibacterial and antifungal activities of the ligand and its divalent and trivalent metal complexes were performed against the various pathogens viz. Escherichia coli, Salmonella typhi, Staphylococcus aureus, Bacillus subtilis, Candida albicans, and Aspergillus niger with reference to standard antibiotics viz. ofloxacin, azithromycin, and fluconazole. All metal complexes showed promising biological activity as compared with their parent ligand and may be used as a potential antimicrobial candidate in biological science.
杂环N'-(4-(二乙胺)-2-羟基苄基)-4-氧哌替啶-1-碳肼希夫碱配体及其金属配合物:合成、结构表征、热行为、荧光性质和生物活性
由4-氧哌替啶-1-碳肼与4-(二乙胺)-2-羟基苯醛缩合反应,得到了新的杂环腙希夫碱配体N'-(4-(二乙胺)-2-羟基苄基)-4-氧哌替啶-1-碳肼(H2L)。配体与铬(III)、锰(II)、铁(III)、钴(II)、镍(II)、铜(II)和锌(II)等氯盐反应,分别形成[Cr(L)(Cl)(H2O)2]、[Mn(HL)(Cl)(H2O)2]、[Fe(L)(Cl)(H2O)2]、[Co(HL)(Cl)(H2O)2]、[Ni(HL)(Cl)(H2O)2]、[Cu(HL)(Cl) (H2O)2]、[Zn(L)(H2O)]等金属配合物。通过元素分析和光谱技术,即FT-IR, 1H NMR, 13C NMR和LC-MS谱,证实了腙配体的结构。新合成的配体对Cr, Mn, Fe, Co, Ni, Cu和Zn金属离子表现为三叉戟ONO供体。光谱、磁矩和热数据表明,除Zn外,所有金属配合物均为八面体,其化学计量比为1:1 (M:L)。ESR研究表明,结构中存在轴向畸变时,π键的共价比σ键的共价强得多。摩尔电导率数据表明配合物的非电解性质。粉末x射线衍射图显示了化合物的纳米晶体性质。配体的SEM显微照片与Ni(II)配合物有明显不同,表明Ni(II)离子与配体的配位。由于配体及其锰(II)、铬(III)、钴(II)和锌(II)配合物的功能荧光团,在λ激发521至524 nm区域发出强烈的荧光。利用Coats-Redfern法从TGA图中计算了各分解步骤的Ea、∆S、∆H、∆G等动力学参数,热稳定性顺序为Cr < Fe < Co < Mn = Cu < Zn < Ni。以氧氟沙星、阿奇霉素、氟康唑等标准抗生素为对照,研究了该配体及其二价和三价金属配合物对大肠杆菌、伤寒沙门氏菌、金黄色葡萄球菌、枯草芽孢杆菌、白色念珠菌、黑曲霉等病原菌的抑菌和抑菌活性。与母体配体相比,所有金属配合物都显示出良好的生物活性,可能成为生物科学中潜在的抗菌候选物。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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