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Multipurpose surface functionalization on AZ31 magnesium alloys by atomic layer deposition: tailoring the corrosion resistance and electrical performance

机译:多用途对AZ31表面功能化镁合金的原子层沉积:裁剪耐腐蚀和电性能

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摘要

An environmentally friendly atomic layer deposition (ALD) method with excellent atomic scale roughness controllability is developed to fabricate a highly conformal, corrosion preventive and conducting Al doped ZnO (AZO) film on a plasma electrolytic oxidation (PEO) layer coated AZ31 magnesium alloy. Compared with the insulated PEO coated magnesium alloy, the electrical conductivity of the composite coating increases to 25 S m(-1), and in the meantime the anticorrosion performance of the PEO/AZO coating is greatly improved compared to the bare Mg alloy. The enhanced electrical properties of the composite coating are due to the abundant oxygen deficiency in the AZO film generated during the ALD process. The improvement of the corrosion resistance is attributed to the changes in the bond angle and the distance between the surface coating molecule and adsorbent H2O molecule. As a result, the hydrophilic surface of PEO changes to the hydrophobic surface of AZO, providing a novel process to protect the surface of the magnesium alloy. It is believed that this technique may provide a novel and controllable strategy to expand the practical applications of magnesium alloys.
机译:一个环保的原子层原子的沉积(ALD)方法开发规模粗糙度可控性制造一个高度适形,腐蚀预防和导电掺铝氧化锌(偶氮)的电影在等离子体电解氧化(PEO)层涂布粗加工合金。绝缘PEO涂层镁合金,复合涂层的导电性增加到25 S m(1),与此同时PEO /偶氮涂料的防腐性能裸露的Mg相比大大提高了合金。复合涂层是由于丰富的氧气缺乏在生成的偶氮膜退化的过程。抵抗是归因于的变化键角和表面之间的距离涂料分子和吸附的水分子。结果,PEO的亲水表面变化偶氮的疏水表面,提供一本小说保护镁表面的过程合金。提供一个小说和控制策略扩大镁的实际应用合金。

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