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首页> 外文期刊>Journal of Materials Research and Technology >Eucalyptus camaldulensis gum as a green matrix to fabrication of zinc and silver nanoparticles: Characterization and novel prospects as antimicrobial and dye-degrading agents
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Eucalyptus camaldulensis gum as a green matrix to fabrication of zinc and silver nanoparticles: Characterization and novel prospects as antimicrobial and dye-degrading agents

机译:桉树camaldulensis 胶作为绿色基质,用于制备锌和银纳米粒子:表征和新的前景作为抗微生物和染料降解剂

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Green biosynthesis of nanoparticles (NPs) has gained much significance due to cost-effectiveness, time-efficiency, biocompatibility, and environmentally friendliness. Herein, we report the fabrication of zinc (ZnNPs) and silver nanoparticles (AgNPs) usingEucalyptus camaldulensis(EC) gum extract as a low-cost and green bio-matrix. The as-fabricated EC-ZnNPs and EC-AgNPs were comprehensively characterized by UV–visible spectroscopy, Fourier Transform infrared spectroscopy (FTIR), thermogravimetric analysis (TGA), X-Ray Diffraction (XRD),and scanning electron microscopy (SEM) techniques. Specific characteristic peaks of synthesized NPs were scrutinized through UV–visible and FTIR. The synthesized NPs revealed irregular shape and size with an increase in roughness of the surface. A delay in the rate of weight loss indicated the stable nature of EC-ZnNPs at high temperatures. Similarly, an increase in the crystallinity nature of EC-ZnNPs and EC-AgNPs was evidenced through XRD analysis. As compared to gum samples, the green fabricated EC-ZnNPs and EC-AgNPs performed an admirable inhibitory activity against a pathogenic bacterium (Escherichia coli) and fungal strain (Schizophyllum commune). Mutagenicity and cytotoxicity activities determined through Ames and haemolytic tests affirmed the non-mutagenic and non-toxic attributes of the gum samples and their derived EC-ZnNPs and EC-AgNPs. Finally, the EC-AgNPs and EC-ZnNPs showed a high photocatalytic potentiality towards the degradation of methylene blue dye under sunlight irradiation. In conclusion, the findings manifest excellent antimicrobial and dye degradation potentialities of gum-based EC-ZnNPs and EC-AgNPs, representing its putative perspective as a novel nano-antibiotic against pathogenic bacterial and fungal isolates, and for environmental mitigation. The present method is eco-friendly, clean and did not require any toxic/hazardous reductants.
机译:由于成本效益,时间效率,生物相容性和环境友好,纳米颗粒(NPS)的绿色生物合成产生了很大的意义。在此,我们报告了锌(ZnNP)和银纳米颗粒(AgNP)的制备使用桉树植物(EC)胶提取物作为低成本和绿色生物基质。通过UV可见光光谱,傅里叶变换红外光谱(FTIR),热重分析(TGA),X射线衍射(XRD)和扫描电子显微镜(SEM)技术全面地表征了辅助的EC-ZnNP和EC-AGNPS和EC-AGNP。和扫描电子显微镜(SEM)技术。通过UV可见和FTIR仔细检查合成NP的特异性峰。合成的NPS显示出不规则的形状和大小,随着表面的粗糙度的增加而增加。减肥率的延迟表明了高温下EC-ZnNP的稳定性质。类似地,通过XRD分析证明了EC-ZnNPS和EC-AgNP的结晶性质的增加。与胶样品相比,绿色制造的EC-ZnNP和EC-AgNPS对致病性细菌(大肠杆菌)和真菌菌株(Schizophyllum Commune)进行了令人钦佩的抑制活性。通过AME和溶血测试确定的致突变性和细胞毒性活性肯定了胶样品的非致突变和无毒属性及其衍生的EC-ZnNP和EC-AgNP。最后,EC-AgNP和EC-ZnNPS朝着阳光照射下亚甲基蓝染料降解的高光催化潜力。总之,该研究结果表明了胶基EC-ZnNP和EC-AGNP的优异抗微生物和染料降解潜力,其推定视角是一种新的纳米抗生素免受致病性细菌和真菌分离株,以及环境缓解。本方法是环保,清洁,不需要任何有毒/危险的还原剂。

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