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首页> 外文期刊>RSC Advances >Experimental and DFT studies of carbon nanotubes covalently functionalized with an imidazole derivative for electrochemical stability and green corrosion inhibition as a barrier layer on the nickel alloy surface in a sulphuric acidic medium
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Experimental and DFT studies of carbon nanotubes covalently functionalized with an imidazole derivative for electrochemical stability and green corrosion inhibition as a barrier layer on the nickel alloy surface in a sulphuric acidic medium

机译:用咪唑衍生物与电化学稳定性和绿色腐蚀抑制中的亚咪唑衍生物共价官能化的实验性和DFT研究作为硫酸中镍合金表面上的阻挡层

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Nickel-based alloys are used for various applications such as in automobiles, superalloys and ship making. Their stability in acidic environments, however, is often not sufficient due to their native oxide films not withstanding harsh conditions. Carbon-based materials, in contrast, have shown high stability in acidic environments. In the present work, 4,5-diphenyl-imidazole-functionalized carbon nanotubes were investigated as a corrosion-inhibiting barrier layer on nickel alloy surfaces. We studied the corrosion inhibition efficiency of the imidazole-functionalized carbon nanotubes coated on nickel alloys. The materials were characterized using microscopy and spectroscopy methods. DFT studies were performed as well. The corrosion inhibition was evaluated using electrochemical methods. The imidazole-functionalized CNTs were shown to be crystalline and to have tubular structures. They displayed excellent corrosion inhibition on the nickel alloy surface.
机译:镍基合金用于各种应用,例如汽车,超合金和船舶制造。然而,它们在酸性环境中的稳定性通常不足以足够的,因为它们的天然氧化物膜不受耐受苛抗条件。相反,碳基材料在酸性环境中显示出高稳定性。在本作工作中,研究了4,5-二苯基 - 咪唑 - 官能化碳纳米管作为镍合金表面上的腐蚀抑制阻挡层。我们研究了涂覆在镍合金上的咪唑 - 官能化碳纳米管的腐蚀抑制效率。使用显微镜和光谱方法表征材料。也进行DFT研究。使用电化学方法评价腐蚀抑制。咪唑官能化CNT被证明是结晶的并且具有管状结构。它们在镍合金表面上显示出优异的腐蚀抑制。

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