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Advanced superhydrophobic electroactive fluorinated polyimide and its application in anticorrosion coating

机译:先进的超疏水电活性氟化聚酰亚胺及其在防腐涂料中的应用

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摘要

A novel superhydrophobicelectroactive fluorinated polyimide (HEFPI) was first synthesized from aniline trimer and 4,4-(Hexafluoroisopropylidene) diphthalic anhydride. The HEFPI could be fabricated as superhydrophobicfilm by replicated the surface of the Xanthosomasagittifolium leaves. The water contact angle of HEFPI film reaches as high as 157 degrees and the superhydrophobic property of HEFPI could coat on cold-rolled steel (CRS) to prevent the metal corrosion. Electroactivity of EFPI was evaluated by performing electrochemical cyclic voltammetry study. Besides, redox catalytic capabilities of aniline trimer units existed in HEFPI main chain may induce the formation of passive metal oxide layers on the CRS electrode. The synergistic effects (hydrophobic property and passive metal oxide layers) make the HEFPI coating has great potential for advanced anticorrosion material.
机译:首先由苯胺三聚体和4,4-(六氟异亚丙基)二邻苯二甲酸酐合成了一种新型的超疏水电活性氟化聚酰亚胺(HEFPI)。通过复制Xanthosomasagittifolium叶的表面,可以将HEFPI制成超疏水膜。 HEFPI薄膜的水接触角高达157度,并且HEFPI的超疏水性能可以在冷轧钢(CRS)上涂层,以防止金属腐蚀。 EFPI的电活性通过进行电化学循环伏安法研究进行评估。此外,HEFPI主链中存在的苯胺三聚体的氧化还原催化能力可能会诱导CRS电极上形成钝化金属氧化物层。协同作用(疏水性和钝化金属氧化物层)使HEFPI涂层具有用于高级防腐材料的巨大潜力。

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