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作 者:Mohammad Aadil Ananda Repycha Safira Arash Fattah-alhosseini Mohammad Alkaseem Mosab Kaseem
机构地区:[1]Corrosion and Electrochemistry Laboratory,Department of Nanotechnology and Advanced Materials Engineering,Sejong University,Seoul 05006,Republic of Korea [2]Department of Materials Engineering,Faculty of Engineering,Bu-Ali Sina University,Hamedan,Iran [3]Owlstone Medical,Cambridge CB40GJ,United Kingdom
出 处:《Journal of Magnesium and Alloys》2024年第9期3729-3743,共15页镁合金学报(英文)
基 金:supported by the National Research Foundation of Korea(NRF)funded by the Korean government(MSIT)(No.2022R1A2C1006743).
摘 要:Modulating metal-organic framework’s(MOF)crystallinity and size using a polymer,in conjunction with a high surface area of layered double hydroxide,yields an effective strategy for concurrently enhancing the electrochemical and photocatalytic performance.In this study,we present the development of an optimized nanocomposite,denoted as 0.5PVP/ZIF-67,developed on AZ31 magnesium alloy,serving as an efficient and durable multifunctional coating.This novel strategy aims to enhance the overall performance of the porous coating through the integration of microarc oxidation(MAO),ZnFe LDH backbone,and ZIF-67 formation facilitated by the addition of polyvinylpyrrolidone(PVP),resulting in a three-dimensional,highly efficient,and multifunctional material.The incorporation of 0.5 g of PVP proved to be effective in the size modulation of ZIF-67,which formed a corrosion-resistant top layer,improving the total polarization resistance(R_(p)=8.20×10^(8)).The dual functionality exhibited by this hybrid architecture positions it as a promising candidate for mitigating environmental pollution,degrading 97.93%of Rhodamine B dye in 45 min.Moreover,the sample displayed exceptional degradation efficiency(96.17%)after 5 cycles.This study illuminates the potential of nanocomposites as electrochemically stable and photocatalytically active materials,laying the foundation for the advancements of next-generation multifunctional frameworks.
关 键 词:Hybrid material POLYVINYLPYRROLIDONE Metal-organic framework Layered double hydroxide Corrosion Photocatalytic degradation
分 类 号:TG174.4[金属学及工艺—金属表面处理]
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