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Experimental and computational evaluation of illicium verum as a novel eco-friendly corrosion inhibitor for aluminium

机译:Illicium Verum作为铝新生态辅助腐蚀剂的实验和计算评价

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Illicium verum extract is investigated as a corrosion inhibitor of aluminium in the presence of an acid medium using gravimetric and impedance techniques. The gravimetric results reveal that the adsorption of inhibitor on the metal surface is physisorption. The impedance measurements are used to interpret the electrochemical process occurring at the interface of aluminium and corrosive medium. The surface characteristics of aluminium are evaluated using scanning electron microscopy-energy dispersive X-ray spectroscopy. The percentage composition of chemical constituents present in the extract is obtained using gas chromatographymass spectrometry and E-anethole is found to be the main chemical component. The interaction between the chemical constituents or inhibitor molecules and the metal surface are evaluated using Monte Carlo simulation. The determination of electron density on the inhibitor molecules is performed using density functional theory. The results from this respective study demonstrate good inhibitive properties of the illicium verum extract towards the corrosion of aluminium in concentrated hydrochloric acid solution.
机译:使用重量测和阻抗技术在酸介质存在下,研究了宫脉络提取物作为铝的腐蚀抑制剂。重量结果表明,抑制剂对金属表面上的吸附是理解。阻抗测量用于解释在铝和腐蚀介质的界面处发生的电化学过程。使用扫描电子显微镜 - 能量分散X射线光谱评估铝的表面特征。使用气相色谱法测定萃取物中存在的化学成分的百分比组成,并发现E-苯乙醇是主要的化学成分。使用蒙特卡罗模拟评价化学成分或抑制剂分子与金属表面之间的相互作用。使用密度函数理论进行抑制剂分子上的电子密度的测定。该相应研究的结果表明了朝富氢氯酸溶液中铝腐蚀效果的良好抑制性质。

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