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首页> 外文期刊>Journal of Sol-Gel Science and Technology >Sol-gel synthesis of Mg(OH)(2) and Ca(OH)(2) nanoparticles: a comparative study of their antifungal activity in partially quaternized p(DMAEMA) nanocomposite films
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Sol-gel synthesis of Mg(OH)(2) and Ca(OH)(2) nanoparticles: a comparative study of their antifungal activity in partially quaternized p(DMAEMA) nanocomposite films

机译:Mg(OH)(2)和Ca(OH)(2)纳米颗粒的溶胶 - 凝胶合成:部分季铵化P(DMAEMA)纳米复合膜中的抗真菌活性的对比研究

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摘要

The evaluation of the antifungal activity of Mg(OH)(2) and Ca(OH)(2) nanoparticles (NPs), synthesized by sol-gel method and their mixtures at different concentrations, is reported. The antifungal activity of the hydroxide NPs was studied using Aspergillus niger and Penicillium oxalicum isolated from stone surfaces. These model organisms were selected due to their ability to grow on outdoor and indoor climates and their significant impact on human health. Moreover, the antifungal activity of Mg(OH)(2) and Ca(OH)(2) NPs dispersed in positively charged polymeric matrices based on partially quaternized poly(2-(dimethylamino ethyl) methacrylate) (pDMAEMA) was studied. With respect to the morphology, particle size, and textural properties of the NPs, the mixtures of Mg-Ca hydroxides revealed a uniform and smaller particle size, along with a greater surface area, as compared to pristine Ca(OH)(2) NPs. However, the Ca(OH)(2) and a mixture of Mg(OH)(2) and Ca(OH)(2) (10:90 weight ratio) NPs, showed an enhanced growth inhibition of A. niger and P. oxalicum, suggesting that the effect of particle size on the antifungal activity would not be a preponderating factor. In addition, improved antifungal properties against A. niger and P. oxalicum were detected in composite coatings based on hydroxide NPs dispersed in quaternized p(DMAEMA-co-METAI). The use of these systems might provide promising composite materials with potential antifungal properties for various applications.
机译:据报道,通过溶胶 - 凝胶法合成的Mg(OH)(2)和Ca(2)(2)纳米颗粒(2)纳米颗粒(NPS)的抗真菌活性的评价及其在不同浓度下的混合物。使用从石表面上分离的曲霉尼日尔和青霉属植物,研究了氢氧化物NPS的抗真菌活性。这些模型生物是由于它们在室外和室内气候的能力以及对人类健康的重大影响而产生的能力。此外,研究了基于部分季铵化的聚(2-(二甲基氨基乙基)甲基丙烯酸酯)(PDMAEMA)的带正电荷的聚合物基质中的Mg(OH)(2)和Ca(2)NPS的抗真菌活性。关于NPS的形态,粒度和纹理性质,与原始Ca(OH)(2)NPS相比,Mg-Ca氢氧化物的混合物揭示均匀且较小的粒度,以及更大的表面积。但是,Ca(OH)(2)和Mg(OH)(2)和Ca(OH)(2)(2)(10:90重量比)NPS的混合物显示出A.尼日尔和P的增强生长抑制。 Oxalicum,表明粒度对抗真菌活性的影响不是优先症因子。此外,在基于分散在季铵化P(DMAEMA-CO-METAI)的氢氧化物NPS中,在复合涂层中检测到A.尼日尔和P.Almum的改善的抗真菌性。这些系统的使用可以提供具有潜在抗真菌性质的有前途的复合材料,适用于各种应用。

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