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Synthesis and characterization of silver-rich coatings loaded with functionalized clay nanoparticles

机译:用官能化粘土纳米粒子装载银富涂层的合成与表征

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A synthetic exfoliated nanoclay smectite type, LaponiteA (R) S482, was incorporated as a functionalized load in a silica hybrid matrix synthesized by the sol-gel route. The previous functionalization was carried out through a "grafting" reaction with (3-glycidoxypropyl)trimethoxysilane (GPTMS) assisted by ultrasonic dispersion. The precursor sols were synthesized by acid-catalyzed hydrolytic condensation between tetraethoxysilane (TEOS) and functionalized GPTMS, a silver ions source was added in order to obtain a coating material with controlled silver releasing properties. Coatings were obtained by "dip-coating" on different substrates. Structural characterization of the coatings was conducted by SAXS and SEM-EDS, the results revealed a complex silica matrix with intercalated nanoclays, an organic fraction and a homogeneous content of Ag+. The electrochemical characterization was realized by EIS tests on stainless steel coated substrates AISI 316L type; the results showed good barriers properties and a high integrity of the coatings loaded with nanoclay. The evolution of the release of Ag+ ions was studied by XRF, through exposing the coatings to a leaching process at steady state and determining the residual content of Ag within the coat at different immersion times. It was found that the addition of 1.5 wt. % of clay, in respect to condensed silica, decreased the initial diffusion rate of Ag+ ions at near the half part, allowing its potential use in the development of antibacterial coatings with longer terms of life.
机译:合成剥离的纳米粘土蒙脱石型Laponitea(R)S482掺入由溶胶 - 凝胶途径合成的二氧化硅杂化基质中的官能化负载。通过通过超声波分散辅助的“接枝”反应进行先前的官能化通过与(3-丙酸氧基丙基)三甲氧基硅烷(GPTM)反应进行。通过四乙氧基硅烷(TEOS)和官能化的GPTMS之间的酸催化水解缩合合成前体溶胶,加入银离子源以获得具有受控银释放性质的涂料。通过在不同底物上“浸涂”获得涂层。涂层的结构表征通过SAX和SEM-ED进行,结果显示了具有插层纳米铬的复合二氧化硅基质,有机级分和Ag +的均匀含量。通过EIS测试在不锈钢涂覆的基材AISI 316L型中实现了电化学表征;结果显示出良好的屏障性质和纳米粘土的涂层的高完整性。通过XRF研究Ag +离子的释放的演变,通过在稳态将涂层暴露于浸出过程,并在不同浸入时间内测定涂层内的Ag的残余含量。发现添加1.5重量%。关于缩合二氧化硅的粘土%降低了近半部分的Ag +离子的初始扩散速率,允许其在较长的寿命方面开发抗菌涂层。

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