Irshad Muneeb, Mukhtar Anum, Nadeem Tabish Asif, Bilal Hanif Muhammad, Sheraz Mahshab, Berezenko Viktoriia, Zubair Khan Muhammad, Batool Farwa, Imran Muhammad, Rafique Muhammad, Gurgul Jacek, Alshahrani Thamraa, Mosiałek Michał, Kim Juran, Baker Richard T, Motola Martin
Department of Physics, University of Engineering and Technology, Lahore, 54890, Pakistan.
Department of Chemical Engineering, University of Engineering and Technology, New Campus, Lahore, 39021, Pakistan.
Heliyon. 2024 May 16;10(10):e31424. doi: 10.1016/j.heliyon.2024.e31424. eCollection 2024 May 30.
Greenly synthesized nanoparticles have garnered attention due to their low environmental footprint, but impurities limit their applications. A novel semi-organic method for synthesizing silver nanoparticles (AgNPs) using bio-based chelating fuels ( subsp.) reduces the undesirable impurities. The study also showcases the impact of bio-based chelating fuel on various characteristics of AgNPs in comparison to synthetic chelating fuel. The antimicrobial efficacy of the synthesized AgNPs in conjunction with honey was also assessed against The XRD analysis showed cubic structure of AgNPs. The FESEM and TEM analysis showed that the well-connected spherical-shaped AgNPs (∼3-120 nm diameter) while EDS confirmed the presence of Ag in all samples. The TEM analysis also revealed layers of carbonates in AgNPs synthesized using bio-based chelating fuels. XPS investigation confirmed the absence of any prominent impurities in prepared samples and AgNPs have not experienced oxidation on their surface. However, notable surface charging effects due to the uneven conductivity of the particles were observed. The broth dilution method showed that all mixtures containing AgNPs in combination with honey exhibited a significant bacterial growth reduction over a period of 120 h. The highest growth reduction of ∼75 % is obtained for the mixture having AgNPs () while the least growth reduction of ∼51 % is obtained for the mixture having AgNPs (Beta vulgaris subsp.). The findings affirm that AgNPs can be successfully synthesized using bio-based chelating fuels with negligible ecological consequences and devoid of contaminants. Moreover, the synthesized AgNPs can be employed in conjunction with honey for antibacterial purposes.
绿色合成的纳米颗粒因其低环境足迹而受到关注,但杂质限制了它们的应用。一种使用生物基螯合燃料(亚种)合成银纳米颗粒(AgNPs)的新型半有机方法减少了不需要的杂质。该研究还展示了与合成螯合燃料相比,生物基螯合燃料对AgNPs各种特性的影响。还评估了合成的AgNPs与蜂蜜结合对的抗菌效果。XRD分析显示AgNPs为立方结构。FESEM和TEM分析表明,连接良好的球形AgNPs(直径约3 - 120nm),而EDS证实所有样品中都存在Ag。TEM分析还揭示了使用生物基螯合燃料合成的AgNPs中存在碳酸盐层。XPS研究证实制备的样品中没有任何明显的杂质,并且AgNPs表面没有发生氧化。然而,观察到由于颗粒电导率不均匀而产生的明显表面电荷效应。肉汤稀释法表明,所有含有AgNPs与蜂蜜结合的混合物在120小时内细菌生长均显著减少。含AgNPs()的混合物生长减少最高,约为75%,而含AgNPs(甜菜亚种)的混合物生长减少最少,约为51%。研究结果证实,可以使用生物基螯合燃料成功合成AgNPs,其生态影响可忽略不计且无污染物。此外,合成的AgNPs可与蜂蜜结合用于抗菌目的。