Department of Materials Science and NanoEngineering, Rice University, Houston, TX, 77005, USA.
Department of Civil and Environmental Engineering, South Dakota School of Mines and Technology, Rapid City, SD, 57701, USA.
Adv Mater. 2021 Dec;33(51):e2104467. doi: 10.1002/adma.202104467. Epub 2021 Oct 15.
Despite decades of research, metallic corrosion remains a long-standing challenge in many engineering applications. Specifically, designing a material that can resist corrosion both in abiotic as well as biotic environments remains elusive. Here a lightweight sulfur-selenium (S-Se) alloy is designed with high stiffness and ductility that can serve as an excellent corrosion-resistant coating with protection efficiency of ≈99.9% for steel in a wide range of diverse environments. S-Se coated mild steel shows a corrosion rate that is 6-7 orders of magnitude lower than bare metal in abiotic (simulated seawater and sodium sulfate solution) and biotic (sulfate-reducing bacterial medium) environments. The coating is strongly adhesive, mechanically robust, and demonstrates excellent damage/deformation recovery properties, which provide the added advantage of significantly reducing the probability of a defect being generated and sustained in the coating, thus improving its longevity. The high corrosion resistance of the alloy is attributed in diverse environments to its semicrystalline, nonporous, antimicrobial, and viscoelastic nature with superior mechanical performance, enabling it to successfully block a variety of diffusing species.
尽管经过了几十年的研究,但金属腐蚀仍然是许多工程应用中的一个长期挑战。具体来说,设计一种既能在非生物环境中又能在生物环境中耐腐蚀的材料仍然难以实现。在这里,设计了一种轻质的硫-硒(S-Se)合金,具有高刚度和延展性,可以作为一种极好的耐腐蚀涂层,对钢在广泛的不同环境中的保护效率约为 99.9%。S-Se 涂层的低碳钢在非生物(模拟海水和硫酸钠溶液)和生物(硫酸盐还原菌培养基)环境中的腐蚀速率比裸金属低 6-7 个数量级。该涂层具有很强的附着力、机械强度和优异的损伤/变形恢复性能,这为显著降低涂层中缺陷的产生和持续的概率提供了额外的优势,从而提高了其耐久性。该合金在不同环境中的高耐腐蚀性归因于其半结晶、无孔、抗菌和粘弹性,具有优异的机械性能,能够成功阻挡各种扩散物种。