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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >One-Step in Situ Synthesis of Reduced Graphene Oxide/Zn-Al Layered Double Hydroxide Film for Enhanced Corrosion Protection of Magnesium Alloys
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One-Step in Situ Synthesis of Reduced Graphene Oxide/Zn-Al Layered Double Hydroxide Film for Enhanced Corrosion Protection of Magnesium Alloys

机译:石墨烯氧化物/ Zn-Al层层双氢氧化物膜的一步合成,用于增强镁合金的腐蚀保护

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As an effective and environmentally friendly material for corrosion prevention, layered double hydroxide (LDH) films have usually been degraded due to their inherent microporous structure. In this study, graphene derivatives were employed to enhance the corrosion resistance of LDH films. After ultrasonic treatment of a reaction solution mixture containing graphene oxide (GO) powder, a reduced graphene oxide/zinc-aluminum LDH (RGO/Zn-Al LDH) film was in situ synthesized on a magnesium alloy substrate by a one-step facile hydrothermal crystallization process. The characterization results demonstrated that the LDH nanosheets grew on both the GO surface and the magnesium substrate, and thus the agglomeration of graphene was effectively prevented. Furthermore, the GO plates were simultaneously reduced into RGO, which has better corrosion resistance. The as-prepared samples were individually assessed by potentiodynamic polarization measurements, and the RGO/Zn-Al LDH film showed good corrosion resistance with a lower corrosion current density (0.546 mu A/cm(2)) than that of the bare substrate (33.2 mu A/cm(2)) and Zn-Al LDH film (4.33 mu A/cm(2)). The penetration resistance of the Zn-Al LDH film to a corrosive environment was significantly improved through the organic combination with graphene oxide, and this method provides a simple and facile approach to effectively enhance the corrosion protection performance of LDH materials.
机译:作为用于防腐材料的有效和环保的材料,由于其固有的微孔结构,层状双氢氧化物(LDH)薄膜通常已经降低。在该研究中,使用石墨烯衍生物来增强LDH膜的耐腐蚀性。在超声处理含有石墨烯氧化物(GO)粉末的反应溶液(GO)粉末后,通过一步的容易水热量在镁合金基质上在镁合金基质上合成了还原的石墨烯/锌 - 铝LDH(Rgo / Zn-Al LDH)膜结晶过程。表征结果表明,LDH纳米片在去表面和镁基板上增长,因此有效地防止了石墨烯的附聚。此外,将矿板同时降低到RGO中,具有更好的耐腐蚀性。通过电压极化测量分别评估AS制备的样品,RGO / Zn-Al LDH膜显示出良好的耐腐蚀性,耐腐蚀电流密度较低(0.546μA/ cm(2))比裸衬底的腐蚀电流密度(33.2 mu a / cm(2))和Zn-Al LDH膜(4.33μA/ cm(2))。通过与石墨烯氧化物的有机组合显着改善了Zn-Al LDH膜对腐蚀性环境的渗透性,并且该方法提供了一种简单且有效地提高LDH材料的腐蚀保护性能。

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