等离子体电解氧化
材料科学
镁
电解质
涂层
化学工程
银纳米粒子
纳米颗粒
陶瓷
冶金
纳米技术
化学
电极
工程类
物理化学
作者
Yevheniia Husak,Jan Olszaniecki,Justyna Pykacz,Agnieszka Ossowska,Agata Blacha‐Grzechnik,Natalia Waloszczyk,Dorota Babilas,Viktoriia Korniienko,Yuliia Varava,Kateryna Diedkova,Sergiy Kyrylenko,Aden Hodžić,Manfred Kriechbaum,Xiaopeng Lu,Bohdan Dryhval,Мaksym Pogorielov,Wojciech Simka
标识
DOI:10.1016/j.apsusc.2024.159387
摘要
Magnesium is a biodegradable material and thus could be a choice for bone fixation devices and implants with a specific purpose. This study aims to enhance the anti-corrosive, biocompatible, and antibacterial properties on magnesium-based materials through ceramic coatings formation. To achieve this the silicate-based electrolyte was used to create of Plasma Electrolytic Oxidation (PEO) coatings. During investigation the bioactive surfaces were presented by highly developed morphology with pore size from 0.008 ± 0.01 to 0.098 ± 0.14 μm2. The thickness of the coatings reached 7 μm, which provides better corrosive behaviour. The silver nanoparticles (AgNPs) added during plasma electrolytic oxidation (PEO) into a silicate electrolytic bath allowed for achieving enhanced bioactive properties of coating. It increased hydrophilicity from 118° to 62° and showed no cytotoxic effects, which made the coatings promising for further biomedical investigations. Moreover, incorporation of AgNPs into the PEO coating led to release of silver during immersion test, which enhanced antibacterial properties of the surfaces.
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