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基于石墨炔的功能涂层的工程设计用于保护任意形状的铜基底。

Engineering of Graphdiyne-Based Functional Coatings for the Protection of Arbitrary Shapes of Copper Substrates.

机构信息

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, Zhejiang 315201, People's Republic of China.

University of Chinese Academy of Sciences, Beijing 100049, People's Republic of China.

出版信息

ACS Appl Mater Interfaces. 2023 Mar 8;15(9):12305-12314. doi: 10.1021/acsami.2c20665. Epub 2023 Feb 21.

Abstract

Copper-based materials are very important for many application fields from marine industry to energy management and electronic devices. For most of these applications, the copper objects require long-term contact to a wet and salty environment, which leads to serious corrosion of copper. In this work, we report a thin graphdiyne layer directly grown on arbitrary shapes of copper objects at mild conditions, which could function as a protective coating for the copper substrates in artificial seawater with corrosion inhibition efficiency of ∼99.75%. To further improve the protective performance of the coating, the graphdiyne layer is fluorinated and followed by infusion with a fluorine-containing lubricant (i.e., perfluoropolyether). As a result, a slippery surface is obtained, which shows enhanced corrosion inhibition efficiency of ∼99.99% as well as excellent antibiofouling properties against microorganisms, such as protein and algae. Finally, the coatings are successfully applied in the protection of a commercial copper radiator from long-term attack of artificial seawater without disturbing its thermal conductivity. These results demonstrate the great potential of graphdiyne-based functional coatings for the protection of copper devices in aggressive environments.

摘要

铜基材料在海洋工业、能源管理和电子设备等许多应用领域都非常重要。对于这些应用中的大多数,铜制品需要长期接触潮湿和含盐的环境,这会导致铜的严重腐蚀。在这项工作中,我们报告了在温和条件下直接在任意形状的铜制品上生长的一层薄薄的石墨炔层,它可以作为铜基体在人工海水中的防护涂层,其腐蚀抑制效率约为 99.75%。为了进一步提高涂层的防护性能,将石墨炔层氟化,然后注入含氟润滑剂(即全氟聚醚)。结果得到了一个光滑的表面,其腐蚀抑制效率提高到约 99.99%,同时对微生物(如蛋白质和藻类)具有优异的抗生物污染性能。最后,该涂层成功地应用于保护商用铜散热器免受人工海水的长期侵蚀,而不会干扰其导热性。这些结果表明,基于石墨炔的功能涂层在恶劣环境下保护铜器件具有巨大的潜力。

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