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Synthesis and anti-corrosion performance of Adenine-L-Alanine ramification

机译:腺嘌呤-L-丙氨酸分枝的合成及耐蚀性能

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摘要

In this paper, a new amino acid derivative, namely Adenine-L-Alanine ramification (ALAR) was synthesized and investigated as a green corrosion inhibitor for X80 pipeline steel in 0.1 mol/L hydrochloric acid solution using the weight loss, AC impedance, and polarization curve method. The structure of the derivative was characterized by IR and UV-vis spectrum. The weight loss and AC impedance found that the inhibition efficiency increased with the increase in concentration of the inhibitor but decreased with rise in temperature, the corrosion inhibition efficiency attains 91.26% in 8 x 10(-2) g/L concentration at 30 degrees C. The polarization studies showed that the studied amino acid derivative can be used as a corrosion inhibitor. The surface of inhibited and uninhibited specimens was analyzed by scanning electron microscopy and the adsorption of the inhibitor on the mild steel surface obeys Langmuir adsorption isotherm. The quantum chemical descriptors such as the energy of highest occupied molecular orbital, energy of lowest unoccupied molecular orbital were calculated and the inhibition mechanism can be analyzed by the distribution of electrons. Analysis indicated that the inhibitor molecular and empty d orbital of metal forms the coordination bond, coverson the surface of metal, and prevents corrosion reaction.
机译:本文合成了一种新的氨基酸衍生物Adenine-L-Alanine ramification(ALAR),并通过失重,交流阻抗和重量损失研究了它作为X80管线钢在0.1 mol / L盐酸溶液中的绿色缓蚀剂。极化曲线法。该衍生物的结构通过IR和UV-可见光谱表征。失重和交流阻抗表明,缓蚀剂的效率随缓蚀剂浓度的增加而增加,随温度的升高而降低,在30°C的8 x 10(-2)g / L浓度下缓蚀效率达到91.26%。极化研究表明,所研究的氨基酸衍生物可以用作腐蚀抑制剂。通过扫描电子显微镜分析抑制和未抑制样品的表面,缓蚀剂在低碳钢表面的吸附遵循Langmuir吸附等温线。计算了占据分子轨道最高能量,未占据分子轨道最低能量的量子化学描述子,并通过电子分布分析了其抑制机理。分析表明,抑制剂分子与金属的空d轨道形成配位键,覆盖金属表面,防止腐蚀反应。

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