Key Laboratory of Marine Materials and Related Technologies, Zhejiang Key Laboratory of Marine Materials and Protective Technologies, Ningbo Institute of Materials Technology and Engineering, Chinese Academy of Sciences, Ningbo 315201, PR China.
Key Laboratory of Impact and Safety Engineering, Ministry of Education, Ningbo University, Ningbo 315211, PR China.
J Colloid Interface Sci. 2022 Dec 15;628(Pt B):384-397. doi: 10.1016/j.jcis.2022.08.070. Epub 2022 Aug 17.
Carbon steel is the most widely used engineering material, and its corrosion is one of the main areas of concern in many industries. The most practical approach to control this problem is to use corrosion inhibitors. Currently, because of their good water solubility, excellent chemical stability, low cost and nontoxic features, carbon dots (CDs), especially heteroatom-doped CDs, have been developed as green corrosion inhibitors, but the corrosion inhibition efficiency and underlying mechanisms of single- or dual-element doping have not yet been accurately compared and analyzed. Inspired by this, eco-friendly nitrogen-doped and nitrogen, sulfur codoped CDs (N-CDs and N,S-CDs) are prepared via a one-step hydrothermal process, and a comparative study on their inhibition performance for carbon steel corrosion in strong acidic solution is performed. The results show that both N-CDs and N,S-CDs can restrain the corrosion of carbon steel, and their inhibition efficiency increases with increasing concentration and immersion time, reaching approximately 87.9% (N-CDs) and 96.4% (N,S-CDs) at 200 ppm after 1 h of immersion. Molecular dynamics simulation indicates that the strong interaction ability between N,S-CDs and the Fe substrate leads to higher corrosion inhibition performance than the single N doping case, benefiting from the multi-anchor adsorption of N,S-CDs on carbon steel in a strong acidic solution. Therefore, the facile preparation, eco-friendliness and high corrosion inhibition performance of N,S-CDs will provide a new approach for designing highly efficient carbon dots and broadening the application of carbon dots in the corrosion field.
碳钢是应用最广泛的工程材料,其腐蚀是许多行业关注的主要问题之一。控制这一问题最实用的方法是使用腐蚀抑制剂。目前,由于其良好的水溶性、优异的化学稳定性、低成本和无毒的特点,碳点(CDs),特别是杂原子掺杂的 CDs,已被开发为绿色腐蚀抑制剂,但单一或双元素掺杂的腐蚀抑制效率和潜在机制尚未得到准确比较和分析。受此启发,通过一步水热法制备了环保型氮掺杂和氮、硫共掺杂 CDs(N-CDs 和 N,S-CDs),并对它们在强酸性溶液中抑制碳钢腐蚀的性能进行了比较研究。结果表明,N-CDs 和 N,S-CDs 均可抑制碳钢的腐蚀,其抑制效率随浓度和浸泡时间的增加而增加,在 200 ppm 下浸泡 1 h 后,抑制效率分别达到约 87.9%(N-CDs)和 96.4%(N,S-CDs)。分子动力学模拟表明,N,S-CDs 与 Fe 基底之间的强相互作用能力导致其腐蚀抑制性能高于单 N 掺杂情况,这得益于 N,S-CDs 在强酸性溶液中对碳钢的多锚定吸附。因此,N,S-CDs 的简便制备、环保性和高腐蚀抑制性能将为设计高效碳点提供新途径,并拓宽碳点在腐蚀领域的应用。