声纳法合成纳米银及其抑菌实验研究

Suci Amaliyah, M. Masruri, A. Sabarudin, S. Sumitro
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引用次数: 1

摘要

本研究采用超声辅助环保的方法,以胡椒逆折果水提物为原料合成纳米银。在AgNPs的合成过程中,胡椒逆折提取物的化合物可作为还原剂和封盖剂。以硝酸银为起始原料,与Piper retro骨折提取物进行反应。AgNPs的形成通过颜色从无色到深棕色的变化来监测。采用UV-Visible、FTIR、XRD和FESEM-EDS对合成的AgNPs进行了表征。用紫外-可见分光光度计对纳米银表面等离子体共振峰进行了分析,峰位在476 nm处。在3420 cm−1、2922 cm−1、1632 cm−1和1021 cm−1处,银纳米粒子的FTIR谱峰与Piper逆折提取物的谱峰相似,表明银纳米粒子可能与稳定纳米粒子有关,而在702 cm−1和535 cm−1处的新峰显示了Ag-O-H的特征谱带。x射线衍射图显示了银纳米粒子的结晶性质,平均晶粒尺寸约为24.86 nm。扫描电镜观察到银纳米颗粒呈球形。能谱分析表明银的含量较高。合成的纳米银对大肠杆菌和金黄色葡萄球菌具有抗菌活性。本研究报道了以植物提取物为原料成功的绿色合成AgNPs。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Sonication-assisted green synthesis of silver nanoparticles using Piper retrofractum fruit extract and their antimicrobial assay
In this study, silver nanoparticles (AgNPs) were synthesized using aqueous extract of Piper retrofractum fruits by the sonication-assisted an eco-friendly method. The compounds of Piper retrofractum extract can perform as reducing as well as capping agent in the synthesis process of AgNPs. Silver nitrate was used as a starting material and was reacted with Piper retrofractum extracts. The formation of AgNPs was monitored by a color change from colorless to dark brown. The synthesized AgNPs were characterized using UV-Visible, FTIR, XRD, and FESEM-EDS analysis. Surface plasmon resonance peak of silver nanoparticles analyzed using a UV-Vis spectrophotometer was observed at 476 nm. FTIR spectrum of silver nanoparticles peaks at 3420 cm−1, 2922 cm−1, 1632 cm−1, and 1021 cm−1 was similar to the Piper retrofractum extract spectrum, which indicated the compounds might involve in stabilizing nanoparticles, whereas the additional new peaks at 702 cm−1 and 535 cm−1 revealed the characteristic band of Ag-O-H. The X-ray diffractogram showed the crystalline properties of silver nanoparticles, and the average crystallite size was found around 24.86 nm. The spherical shape of morphology silver nanoparticles was observed in the SEM photograph. EDS spectrum showed the high presence of silver. Synthesized silver nanoparticles exhibited antimicrobial activity against E.coli and S.aureus. This study reported the successful green synthesis of AgNPs implementing of plant extract.
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