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Development of a multifunctional TiO2/MWCNT hybrid composite grafted on a stainless steel grating

机译:在不锈钢光栅上接枝的多功能TiO2 / MWCNT混合复合材料的研制

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Functional materials have a promising potential for the fabrication of new devices with improved properties to meet many requirements, including environmental issues. Along this idea, a multiphase structure made using a TiO2/MWCNT hybrid nanoscaffold grafted on a metal grating (stainless steel type), acting as a strong, highly durable and heat/thermal inert support, is proposed. The method, consisting firstly of the fabrication of a porous scaffold via catalytic-CVD of a MWCNT forest on stainless steel, followed by the grafting of nanocrystalline TiO2 via the sol-gel method and then calcination, is simple and effective. Morphology, structure and optical properties have been investigated using XRD, SEM, AFM, and HRTEM techniques as well as Raman and UV-visible spectroscopy, and porosity analysis. Interestingly, the TiO2/MWCNT hybrid composite exhibits enhanced photocatalytic activity as compared to nanocrystalline TiO2, obtained by adopting the same preparation. More interestingly, the hybrid system exhibits additional functionalities, such as magnetic, surface and optical properties. The multifunctional approach allows for the combination of enhanced photodegradation with magnetic properties, which can make the recovery of a solution from a photocatalyst easier. Furthermore, it will be shown that, by moving from MWCNT/stainless steel to TiO2/MWCNT/stainless steel composites, the surface character changes from hydrophobic to hydrophilic in nature. Grafting on the stainless steel support allows for the addition of a broad range of features, including combined strength and corrosion resistance in aqueous solutions at ambient temperature, together with enhancement of electrical, optical and photocatalytic properties.
机译:功能材料具有提高性质的新设备的有希望的潜力,以满足许多要求,包括环境问题。沿着这一思路,多相结构中使用接枝在金属光栅(不锈钢型)的TiO 2 / MWCNT混合纳米支架制成,充当一个强有力的,高度耐用和热/热惰性载体,提出。该方法通过在不锈钢上通过MWCNT林的催化-CVD制备多孔支架的制造,然后通过溶胶 - 凝胶法接枝纳米晶TiO2,然后煅烧,简单且有效。已经使用XRD,SEM,AFM和HRTEM技术以及拉曼和UV可见光光谱和孔隙度分析来研究了形态学,结构和光学性质。有趣的是,与纳米晶体TiO 2相比,TiO 2 / MWCNT杂化复合材料表现出增强的光催化活性,通过采用相同的制备获得。更有趣的是,混合系统表现出附加功能,例如磁性,表面和光学性质。多功能方法允许具有磁性性能的增强光降解的组合,这可以使光催化剂更容易地恢复溶液。此外,将显示,通过从MWCNT /不锈钢移动到TiO2 / MWCNT /不锈钢复合材料,表面特征从疏水性变化到性质中。在不锈钢支撑件上嫁接允许添加广泛的特征,包括在环境温度下水溶液中的组合强度和耐腐蚀性,以及增强电气,光学和光催化性能。

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