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首页> 外文期刊>Bulletin of Materials Science >Characterization of the antibacterial galactomannan/Zn(OH)(2)-ZnO composite material prepared in situ from a green process using mesquite seeds as a biopolymer source
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Characterization of the antibacterial galactomannan/Zn(OH)(2)-ZnO composite material prepared in situ from a green process using mesquite seeds as a biopolymer source

机译:抗菌半乳甘露聚糖/ Zn(OH)(2)-ZnO复合材料的表征在使用乳房种子作为生物聚合物来源的绿色工艺中制备<粗体>原位。

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摘要

In this work, the preparation of an antibacterial galactomannan/Zn(OH)2-ZnO composite material by a green process is proposed and demonstrated. The galactomannan polysaccharide was extracted from the arid-native mesquite (Prosopis spp.) seeds through a hydrothermal technique, and it was used as an organic polymeric matrix for the in situ chemical precipitation of the Zn(OH)2-ZnO inorganic particles from simple reactions between Zn2+ and NaOH. The preparation was performed under standard conditions in aqueous solutions. The composite material, which was obtained by centrifugation of the previous preparation, was characterized by X-ray diffraction, transmission and scanning electron microscopy, infrared spectroscopy and thermal analysis. By means of these techniques, it was deduced that the composite material is highly crystalline (about 94%), composed of about 92% inorganic and 8% organic portion, and has a predominant size of 760 nm and a mean size of 800 nm. The antibacterial activity of the composite material was also studied, which resulted better against Escherichia coli (Gram-negative bacterium) than against Staphylococcus aureus (Gram-positive bacterium), which was calculated in a difference of about 30%. This work presents the high potential of galactomannans to form functional composite materials with inorganic particles.
机译:在这项工作中,提出并证明了通过绿色工艺制备抗菌半乳甘露甘露甘露糖烷烃/ Zn(OH)2- ZnO复合材料的制备。通过水热技术从干旱原生胚胎(ProsoPIS SPP)种子中萃取半乳甘露甘露甘露甘露甘露甘露胺醛糖,并用作Zn(OH)2- ZnO无机颗粒的原位化学沉淀的有机聚合物基质Zn2 +和NaOH之间的反应。制备在水溶液中的标准条件下进行。通过离心预先准备而获得的复合材料,其特征在于X射线衍射,透射电子显微镜,红外光谱和热分析。通过这些技术,推导出复合材料是高度结晶的(约94%),由约92%无机和8%有机部分组成,具有760nm的主要大小,平均尺寸为800nm。研究了复合材料的抗菌活性,这使得大肠杆菌(革兰氏阴性细菌)更好地与含有金黄色葡萄球菌(革兰氏阳性细菌),其在差异为约30%的差异。该工作介绍了半乳甘露聚糖的高潜力,形成具有无机颗粒的功能性复合材料。

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