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Synthesis Characterization Antimicrobial Studies and Corrosion Inhibition Potential of 18-dimethyl-13681013-hexaazacyclotetradecane: Experimental and Quantum Chemical Studies

机译:18-二甲基-13681013-六氮杂环十四烷的合成表征抗菌研究和缓蚀潜力:实验和量子化学研究

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摘要

The macrocylic ligand, 1,8-dimethyl-1,3,6,8,10,13-hexaazacyclotetradecane (MHACD) was synthesized by the demetallation of its freshly synthesized Ni(II) complex (NiMHACD). Successful synthesis of NiMHACD and the free ligand (MHACD) was confirmed by various characterization techniques, including Fourier transform infra-red (FT-IR), proton nuclear magnetic resonance (1H-NMR), carbon-13 nuclear magnetic resonance (13C-NMR), ultraviolet-visible (UV-vis), and energy dispersive X-ray (EDX) spectroscopic techniques. The anti-bacteria activities of MHACD were investigated against Staphylococcus aureus and Enterococcus species and the results showed that MHACD possesses a spectrum of activity against the two bacteria. The electrochemical cyclic voltammetry study on MHACD revealed that it is a redox active compound with promising catalytic properties in electrochemical applications. The inhibition potential of MHACD for mild steel corrosion in 1 M HCl was investigated using potentiodynamic polarization method. The results showed that MHACD inhibits steel corrosion as a mixed-type inhibitor, and the inhibition efficiency increases with increasing concentration of MHACD. The adsorption of MHACD obeys the Langmuir adsorption isotherm; it is spontaneous and involves competitive physisorption and chemisorption mechanisms. Quantum chemical calculations revealed that the energy of the highest occupied molecular orbital (HOMO) of MHACD is high enough to favor forward donation of charges to the metal during adsorption and corrosion inhibition. Natural bond orbital (NBO) analysis revealed the presence of various orbitals in the MHACD that are capable of donating or accepting electrons under favorable conditions.
机译:大环配体1,8-二甲基-1,3,6,8,10,13-六氮杂环十四烷(MHACD)是通过对其新鲜合成的Ni(II)配合物(NiMHACD)脱金属而合成的。 NiMHACD和游离配体(MHACD)的成功合成已通过多种表征技术得到证实,包括傅立叶变换红外(FT-IR),质子核磁共振( 1 H-NMR),碳- 13核磁共振( 13 C-NMR),紫外可见光(UV-vis)和能量色散X射线(EDX)光谱技术。研究了MHACD对金黄色葡萄球菌和肠球菌的抗菌活性,结果表明MHACD具有对两种细菌的​​活性谱。对MHACD的电化学循环伏安法研究表明,它是一种氧化还原活性化合物,在电化学应用中具有良好的催化性能。使用电位动力学极化方法研究了MHACD在1 M HCl中对低碳钢腐蚀的抑制潜力。结果表明,MHACD作为一种混合型缓蚀剂可抑制钢的腐蚀,并且随着MHACD浓度的增加,缓蚀效率会提高。 MHACD的吸附遵循Langmuir吸附等温线;它是自发的,涉及竞争性的物理吸附和化学吸附机制。量子化学计算表明,MHACD的最高占据分子轨道(HOMO)的能量足够高,有利于在吸附和腐蚀抑制过程中将电荷向前捐赠给金属。自然键轨道(NBO)分析显示,MHACD中存在各种能够在有利条件下提供或接受电子的轨道。

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