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Green synthesis and antibacterial effects of aqueous colloidal solutions of silver nanoparticles using camomile terpenoids as a combined reducing and capping agent

机译:甘菊萜类化合物作为还原剂和封端剂的组合银纳米颗粒胶体水溶液的绿色合成和抗菌作用

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摘要

Green synthesis method using camomile extract was applied to synthesize silver nanoparticles to tune their antibacterial properties merging the synergistic effect of camomile and Ag. Scanning transmission electron microscopy revealed that camomile extract (CE) consisted of porous globular nanometer sized structures, which were a perfect support for Ag nanoparticles. The Ag nanoparticles synthesized with the camomile extract (AgNPs/CE) of 7 nm average sizes, were uniformly distributed on the CE support, contrary to the pure Ag nanoparticles synthesized with glucose (AgNPs/G), which were over 50 nm in diameter and strongly agglomerated. The energy dispersive X-ray spectroscopy chemical analysis showed that camomile terpenoids act as a capping and reducing agent being adsorbed on the surface of AgNPs/CE enabling their reduction from Ag+ and preventing them from agglomeration. Fourier transform infrared and ultraviolet–visible spectroscopy measurements confirmed these findings, as the spectra of AgNPs/CE, compared to pure CE, did not contain the 1109 cm−1 band, corresponding to –C–O groups of terpenoids and the peaks at 280 and 320 nm, respectively. Antibacterial tests using four bacteria strains showed that the AgNPs/CE performed five times better compared to CE AgNPs/G samples, reducing totally all the bacteria in 2 h.
机译:运用甘菊提取物的绿色合成方法,合成了银纳米颗粒,通过结合甘菊和银的协同作用来调节其抗菌性能。扫描透射电子显微镜显示,甘菊提取物(CE)由多孔球形纳米尺寸的结构组成,是Ag纳米颗粒的完美支撑。用7纳米平均尺寸的甘菊提取物(AgNPs / CE)合成的Ag纳米颗粒均匀地分布在CE载体上,与用葡萄糖(AgNPs / G)合成的纯Ag纳米颗粒直径和直径超过50 nm相反强烈凝聚。能量色散X射线光谱化学分析表明,甘菊类萜类化合物是一种吸附剂和还原剂,被吸附在AgNPs / CE表面,从而使其从Ag + 中还原并防止其团聚。傅立叶变换红外和紫外可见光谱测量结果证实了这些发现,因为与纯CE相比,AgNPs / CE的光谱不包含对应于–C–O组的1109 cm -1 谱带萜类化合物的峰和峰分别在280和320 nm处。使用四种细菌菌株进行的抗菌测试表明,AgNPs / CE的性能是CE CE AgNPs / G样品的五倍,从而在2小时内全部减少了所有细菌。

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