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Bio-inspired green manufacturing of plasmonic silver nanoparticles/Degussa using Banana Waste Peduncles: Photocatalytic, antimicrobial, and cytotoxicity evaluation

机译:Bio-Insporiated绿色制造等血浆银纳米粒子/ DEGUSSA使用香蕉废物服:光催化,抗菌药物和细胞毒性评估

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Plasmonic silver nanoparticle, AgNPs (~14.1?nm) having an absorption peak at 421?nm was fabricated via a biogenic, rapid, and costless technique using Banana Waste Peduncles (BWP) as new disposals instead of plant extracts. According to HPLC analysis, BWP included gallic acid, catechin, chlorogenic acid, caffeic acid, etc. Degussa (P25) has beenin-situadded in one-step to AgNPs using the microwave synthesis to produce nanocomposite sensitive to solar-light irradiation. Transmission electron microscope (TEM) images showed incorporation of P25 over plasmonic AgNPs grown by spherical shape. Based on the photocatalytic process, methylene blue (MB) was fully degraded, and 16?min was sufficient for chromium (IV) reduction. AgNPs/Degussa nanocomposite is photochemical stable even after eight cycles. Besides, the antimicrobial activity indicated the capability of the nanocomposite, as an efficient antimicrobial agent for killing and prevent the diffusion of the nominated microbes;Staphylococcus aureus, Escherichia coli, Candida albicans,andAspergillus nigerdue to the synergistic effect of AgNPs. The cell viability showed up to 94.85% reliable cell migration, particularly at higher concentrations. The significant improvement of photoactivity and stability of the as-synthesized photocatalysts might be relevant for their reusability in practical applications.
机译:通过使用香蕉废物花序(BWP)作为新的处理而不是植物提取物,通过生物,快速和成本技术制造具有421〜NM的吸收峰的AgNP(〜14.1μm)。根据HPLC分析,BWP包括无碱酸,儿茶素,绿原酸,咖啡酸等.Degussa(P25)已经使用微波合成在一步到AgNPS的一步中,以产生对太阳光照射的纳米复合材料敏感。透射电子显微镜(TEM)图像显示通过球形生长的等离子体AgNP的P25结合。基于光催化工艺,亚甲基蓝(MB)完全降解,铬(IV)还原足以进行16Ω分钟。 AgNP / Degussa纳米复合材料即使在八个循环后也是光化学稳定的。此外,抗菌活性表明纳米复合材料的能力,作为杀灭提名微生物的有效抗微生物剂的能力;葡萄球菌,大肠杆菌,念珠菌,尼格斯·尼格斯,尼格斯氏菌,Andaspercoccus,尼格斯州的协同作用。细胞活力显示出高达94.85%的可靠细胞迁移,特别是在较高浓度下。显着改善的光催化剂和合成光催化剂的稳定性可能与其在实际应用中的可重用性相关。

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