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Al2O3 Coatings on Zinc for Anti-Corrosion in Alkaline Solution by Electrospinning

机译:通过静电纺丝锌的Al2O3涂层用于碱性溶液中的抗腐蚀

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摘要

The severe corrosion accompanied with hydrogen evolution reaction has become the main obstacle restricting the utilization of zinc as an electrode in alkaline batteries. Al2O3 coating helps control the corrosion of zinc in alkaline solution. Herein, a stable Al2O3 coating is fabricated through facile electrospinning from Al(NO3)3 as an efficient anti-corrosion film on zinc. The electrospinning technique facilitates uniform dispersion of Al2O3 particles, therefore the corrosion inhibition efficiency could be up to 88.5% in this work. The Al2O3 coating prevents direct contact between zinc and the alkaline solution and minimize hydrogen evolution. Further, the effects of the thickness of Al2O3 coating on corrosion behavior of zinc are investigated through hydrogen evolution reaction, Tafel polarization, and impedance test. The results show that the thicker Al2O3 coating possessed better corrosion inhibition efficiency due to the higher corrosion resistance and lower porosity. The 18 μm Al2O3 coating on zinc provides corrosion current density of 60.6 mA/cm2, while the bare zinc substrate delivers as much as 526.3 mA/cm2.This study presents a promising approach for fabricating Al2O3 coating for corrosion-resistant applications.
机译:伴随氢气进化反应的严重腐蚀已成为限制锌作为碱性电池中电极的主要障碍。 Al2O3涂层有助于控制含碱溶液中锌的腐蚀。在此,通过从Al(NO3)3的容易的静电纺丝制造稳定的Al 2 O 3涂层,作为锌上有效的抗腐蚀膜。静电纺丝技术有助于Al 2 O 3颗粒的均匀分散,因此在这项工作中腐蚀抑制效率可高达88.5%。 Al 2 O 3涂层可防止锌和碱性溶液之间的直接接触,并使氢进化最小化。此外,通过氢进化反应,Tafel偏振和阻抗试验研究了Al2O3涂层厚度对锌腐蚀行为的影响。结果表明,由于耐腐蚀性和较低的孔隙率,较厚的Al2O3涂层具有更好的腐蚀抑制效率。锌上的18μmAl2O3涂层提供60.6mA / cm 2的腐蚀电流密度,而裸锌基板可提供多达526.3mA / cm2。本研究提出了一种用于耐腐蚀应用的Al2O3涂层的有希望的方法。

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