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Additive Synthesis by Sol-gel Method for its use as Antimicrobial

机译:溶胶 - 凝胶法用作抗菌剂的添加剂合成

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The antimicrobial activity of silver nanoparticles makes this chemical element attractive for their incorporation in different materials. Additionally, heteropolyacids (HPAs) have advantages as catalysts which make them environmentally very interesting. The objective of this work is to incorporate in a silica matrix obtained by sol-gel an HPA together with Ag, for their use as fillers in paints or adhesives. Six samples were synthesized, using tetraethoxysilane, methyltrimethoxysilane, acetic acid, molybdophosphoric acid and silver acetate. The silicas were characterized by potentiometric titration, XRD, SEM, TEM, S_(BET) and FT-IR. When HPA is used instead of acetic acid, a variation on the final acidity is produced. The specific surface area decreases when HPA is incorporated into the silica synthesized using tetraethoxysilane as precursor, noticing a slight increase when Ag is added because a different distribution of HPA in the matrix. By SEM, it was observed that the particle size is bigger when the silicas are synthesized with TEOS-HPA, but it still shows the characteristic morphology of bulk silica. Additionally, preliminary test to evaluate the antimicrobial properties of the solids were carried out with fungi as Chaetomium globosum and Alternaria alternate, isolated from contaminated paints, and the first results are encouraging to continue with the development of these materials.
机译:银纳米粒子的抗微生物活性使得该化学元素具有其掺入不同材料的吸引力。另外,杂多酸(HPA)具有作为催化剂的优点,使它们非常有趣。该作品的目的是将通过溶胶 - 凝胶的二氧化硅基质与Ag一起掺入,其用作涂料或粘合剂中的填料。合成六个样品,使用四乙氧基硅烷,甲基三甲氧基硅烷,乙酸,钼磷酸和乙酸银。通过电位滴定,XRD,SEM,TEM,S_(BET)和FT-IR的特征在于,SiliCAS的特征在于。当使用HPA而不是乙酸,产生最终酸度的变化。当HPA掺入使用四乙氧基硅烷作为前体合成的二氧化硅中,比表面积降低,当加入Ag时,注意到当基质中的HPA的不同分布时,注意到略微增加。通过SEM,观察到用TEOS-HPA合成二氧化硅的粒度越大,但它仍然显示散装二氧化硅的特征形态。另外,评价固体抗微生物性质的初步测试用真菌作为肠球菌和来自污染的涂料中分离的杂志和alternaria交替进行,并且第一个结果令人鼓舞的是继续开发这些材料。

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