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Synthesis and characterization of zirconium oxides for use as antimicrobial additives in paints

机译:氧化锆用作涂料中抗微生物添加剂的合成与表征

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Zirconia is a widely used multifunctional material. Its interesting properties, such as high chemical resistance, thermal stability and high mechanical toughness, have turned this material into object of study within fields such as optics, electronics, and magnetism, among others. In recent years, the chemical properties of zirconium oxide have been used, mixed with silicon, in order to obtain more stable and robust mixed oxides, with the final application of toughening ceramics. These properties are related to the degree of mixing of the components at molecular level, therefore, the linking between Si-O-Zr. Considering the effective antimicrobial capacity of silver nanoparticles, their incorporation into different materials is very interesting, acting as biocides. The objective of this work is to obtain zirconium oxides by the sol-gel technique, using zirconium n-propoxide as precursor, and also to study the effect of different solvents (water, ethanol) and the use of various acid catalysts in the synthesis [acetic acid and a heteropolyacid (HPA), as the phosphomolybdic acid (H3PMo_(12)O_(40))] on the physicochemical properties of the obtained solids. Finally, the addition of a silver salt was carried out into the sample with acetic acid and heteropolyacid as catalyst, in order to incorporate it as antimicrobial filler in paints. The obtained materials were characterized by SEM, XRD, FT-IR, textural properties through the absorption of N2 (S_(BET)) and potentiometric titration with n-butylamine. Homogeneous solids were obtained in all the synthesis with acetic acid as catalysts. In addition, x-ray diffraction diagrams of amorphous solids were observed. The values obtained of surface areas are influenced by the variables of synthesis. The characteristic bands of zirconia were observed by FTIR in the solids synthesized. The results show that the solids environmentally synthesized are promising additives for use in paints.
机译:氧化锆是一种广泛使用的多功能材料。其有趣的性质,例如高耐化学性,热稳定性和高机械韧性,使这种材料变为在诸如光学,电子和磁性等领域内的研究对象。近年来,已使用氧化锆的化学性质,与硅混合,以获得更稳定且稳健的混合氧化物,最终应用增韧陶瓷。这些性质与分子水平的组分的混合程度有关,因此,Si-O-Zr之间的连接。考虑到银纳米粒子的有效抗微生物能力,它们的掺入不同的材料非常有趣,作为杀生物剂。本作作品的目的是通过溶胶 - 凝胶技术获得氧化锆,使用锆N-丙氧化物作为前体,并且还研究不同溶剂(水,乙醇)和在合成中使用各种酸催化剂的作用[乙酸和杂多酸(HPA),作为磷钼酸(H3PMO_(12)O_(40))]在所得固体的物理化学性质上。最后,用乙酸和杂多酸作为催化剂将银盐加入样品中,以将其作为涂料中的抗微生物填料掺入。通过SEM,XRD,FT-IR,通过吸收N2(S_(BET))和用正丁胺的电位滴定来表征所得材料的特征。在所有合成中获得均相固体,用乙酸作为催化剂。此外,观察到无定形固体的X射线衍射图。表面积获得的值受合成变量的影响。通过合成的固体中的FTIR观察到氧化锆的特征条带。结果表明,环境合成的固体是用于涂料的有前途的添加剂。

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