The Characterization of the Hydrophobic Surface of Nanocomposites Aloe vera/PS for Antimicrobial Pathogens

Q2 Pharmacology, Toxicology and Pharmaceutics
Lathifa Zonesya Putri, R. Ratnawulan, R. Ramli, H. Rifai, F. L. Supian, Irna Humairah
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引用次数: 0

Abstract

The spread of pathogenic microorganisms on a large scale creates a health disaster for the world. Modifying the surface of the fabric so that it is antimicrobial pathogens with hydrophobic properties is one solution to inhibit the spread of microorganisms. Surface modification was carried out using Aloe vera powder as filler and polystyrene matrix with Aloe vera:PS composition variations of 1:5, 2:5, and 3:5 using the dip coating method and drying temperatures of 10◦C, 50◦C, and 90◦C. The characterization results that have been carried out with the best composition variations are 3:5 and 50◦C with a layered morphology using Scanning Electron Microscopy (SEM), resulting in a surface particle size of 21.243 nm, large contact angle/WCA using a Canon D350 camera with a size of 150.23◦, Fourier Transmission Infrared Analysis (FTIR) with the dominant functional group in the vibration band 2629 cm−1 indicates the presence of a long hydroxyl chain, the vibration band 1500 cm−1 with C-H stretching of the aromatic ring is caused by the characteristics of the polystyrene polymer and the wave number is 1700 cm−1 with stretching C=O which shows the characteristics of the carbonyl group in the Aloe vera sample is a flavonoid compound. The resistance of Aloe vera/PS solution to Klebsiella pneumonia resulted in a 20.18 mm diameter barrier showing strong resistance against bacteria and X-Ray Diffraction analysis showed that the AV powder was amorphous. Thus, the AV/PS 3:5 composition with a calcination temperature of 50◦C represents the greatest variation in the synthesis and characterization of hydrophobic thin films for pathogenic antimicrobial organisms.
抗菌致病菌用芦荟/PS纳米复合材料的疏水表面表征
病原微生物的大规模传播给全世界造成了健康灾难。对织物表面进行修饰,使其具有抗菌病原体的疏水特性,是抑制微生物传播的一种解决方案。以芦荟粉为填料,聚苯乙烯为基体,芦荟:PS组分分别为1:5、2:5和3:5,采用浸涂法进行表面改性,干燥温度分别为10℃、50℃和90℃。用扫描电子显微镜(SEM)对最佳组成变化进行表征的结果是3:5和50◦C层状形貌,得到的表面颗粒尺寸为21.243 nm,用佳能D350相机测量的大接触角/WCA尺寸为150.23◦,傅里叶透射红外分析(FTIR)在振动带2629 cm−1的优势官能团表明存在长羟基链。在1500 cm−1的振动带中,芳香环的C- h拉伸是由聚苯乙烯聚合物的特性引起的;在1700 cm−1的振动带中,波数为C= 0,这表明芦荟样品中的羰基是类黄酮化合物。芦荟/PS溶液对肺炎克雷伯菌的抗性形成了一个直径20.18 mm的屏障,显示出较强的耐药性,x射线衍射分析显示AV粉末呈无定形。因此,在50◦C的煅烧温度下,AV/PS 3:5组成代表了病原微生物疏水薄膜的合成和表征的最大变化。
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来源期刊
Science and Technology Indonesia
Science and Technology Indonesia Pharmacology, Toxicology and Pharmaceutics-Pharmacology, Toxicology and Pharmaceutics (miscellaneous)
CiteScore
1.80
自引率
0.00%
发文量
72
审稿时长
8 weeks
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