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MXene涂层:用于管道钢的新型氢渗透屏障

MXene Coatings: Novel Hydrogen Permeation Barriers for Pipe Steels.

作者信息

Shi Kejun, Meng Xinyu, Xiao Shu, Chen Guohua, Wu Hao, Zhou Chilou, Jiang Saihua, Chu Paul K

机构信息

Institute of Safety Science & Engineering, South China University of Technology, Guangzhou 510641, China.

Department of Physics, City University of Hong Kong, Tat Chee Avenue, Kowloon, Hong Kong 999077, China.

出版信息

Nanomaterials (Basel). 2021 Oct 16;11(10):2737. doi: 10.3390/nano11102737.

Abstract

MXenes are a new class of two-dimensional (2D) materials with promising applications in many fields because of their layered structure and unique performance. In particular, the physical barrier properties of two-dimensional nanosheets make them suitable as barriers against hydrogen. Herein, MXene coatings were prepared on pipe steel by a simple spin-coating process with a colloidal suspension. The hydrogen resistance was evaluated by electrochemical hydrogen permeation tests and slow strain rate tests, and the corrosion resistance was assessed by potentiodynamic polarization. The results reveal that MXene coatings offer excellent hydrogen resistance and corrosion protection by forming a barrier against diffusion. Experimentally, the hydrogen permeability of the MXene coating is one third of the substrate, and the diffusion coefficient decreases as well. The mechanistic study indicates that the hydrogen resistance of the MXene coatings is affected by the number of spin-coated layers, while the concentration of the d-MXene colloidal suspension determines the thickness of a single coating. However, damage to the sample surface caused by the colloidal suspension that contains H and F may limit the improvement of the hydrogen resistance. This paper reveals a new application of 2D MXene materials as a novel efficient barrier against hydrogen permeation and the subsequent alleviation of hydrogen embrittlement in the steel substrate.

摘要

MXenes是一类新型二维(2D)材料,由于其层状结构和独特性能,在许多领域具有广阔的应用前景。特别是,二维纳米片的物理阻隔性能使其适合作为氢阻隔材料。在此,通过简单的旋涂工艺,用胶体悬浮液在管道钢上制备了MXene涂层。通过电化学氢渗透试验和慢应变速率试验评估了其抗氢性能,并通过动电位极化评估了其耐腐蚀性能。结果表明,MXene涂层通过形成扩散阻挡层提供了优异的抗氢性能和腐蚀防护。实验表明,MXene涂层的氢渗透率是基体的三分之一,扩散系数也降低了。机理研究表明,MXene涂层的抗氢性能受旋涂层数的影响,而d-MXene胶体悬浮液的浓度决定了单个涂层的厚度。然而,含有H和F的胶体悬浮液对样品表面造成的损伤可能会限制抗氢性能的提高。本文揭示了二维MXene材料作为一种新型高效的氢渗透阻隔材料以及随后减轻钢基体中氢脆的新应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9ff7/8537529/1e8cd8bb55f3/nanomaterials-11-02737-g002.jpg

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