Quinoxaline derivatives as eco-friendly corrosion inhibitors for steel and non-ferrous metals: A comprehensive review

Maheswara Rao Vegi
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引用次数: 0

Abstract

Material corrosion is undesirable because it damages building and transportation materials, increases maintenance and replacement costs, and poses a threat to environmental safety. Consequently, tremendous measures are being taken to prevent rusting by employing corrosion prevention strategies. Among these, corrosion inhibitors are the most extensively studied due to their strong inhibitory effectiveness. The structural features of quinoxaline derivatives, including the presence of two nitrogen atoms or functional groups, planar heterocyclic rings, and aromatic and conjugated multiple bonds, have been shown to provide excellent inhibitory performance against the corrosion of steel and other metallic materials in corrosive environments, similar to other organic compounds. This review provides an overview of the recent literature on quinoxaline and its derivatives in mitigating corrosion. This article also includes information on corrosion inhibition mechanisms, corrosion inhibition efficiencies, and the classification of corrosion inhibitors. Additionally, some upcoming directions for corrosion control research in the field of inhibitors are outlined.

Abstract Image

喹诺啉衍生物作为环保的钢铁和有色金属缓蚀剂:综述
材料腐蚀是不可取的,因为它会损坏建筑和运输材料,增加维护和更换成本,并对环境安全构成威胁。因此,正在采取大量措施,通过采用防腐蚀策略来防止生锈。其中,缓蚀剂因其具有较强的抑制作用而被广泛研究。喹啉衍生物的结构特征,包括存在两个氮原子或官能团,平面杂环,芳香和共轭多键,已被证明对腐蚀环境中钢和其他金属材料的腐蚀具有优异的抑制性能,类似于其他有机化合物。本文综述了近年来有关喹啉及其衍生物在减轻腐蚀方面的研究进展。本文还包括有关缓蚀机理、缓蚀效率和缓蚀剂分类的信息。最后,对缓蚀剂的腐蚀控制研究方向进行了展望。
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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CiteScore
2.70
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