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Green Synthesis of Nickel Oxide Nanoparticles from

机译:镍氧化镍纳米粒子的绿色合成

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摘要

Green synthesis of nanomaterials is advancing due to its ease of synthesis, inexpensiveness, nontoxicity and renewability. In the present study, an eco-friendly biogenic method was developed for the green synthesis of nickel oxide nanoparticles (NiONPs) using phytochemically rich Berberis balochistanica stem (BBS) extract. The BBS extract was rich in phenolics, flavonoids and berberine. These phytochemicals successfully reduced and stabilised the NiNO3 (green) into NiONPs (greenish-gray). BBS-NiONPs were confirmed by using UV-visible spectroscopy (peak at 305 nm), X-ray diffraction (size of 31.44 nm), Fourier transform infrared spectroscopy (identified -OH group and Ni-O formation), energy dispersive spectroscopy (showed specified elemental nature) and scanning electron microscopy (showed rhombohedral agglomerated shape). BBS-NiONPs were exposed to multiple in vitro bioactivities to ascertain their beneficial biological applications. They exhibited strong antioxidant activities: total antioxidant capacity (64.77%) and 2, 2-diphenyl-1-picrylhydrazyl (71.48%); and cytotoxic potential: Brine shrimp cytotoxicity assay with IC50 (10.40 µg/mL). BBS-NiONPs restricted the bacterial and fungal pathogenic growths at 1000, 500 and 100 µg/mL. Additionally, BBS-NiONPs showed stimulatory efficacy by enhancing seed germination rate and seedling growth at 31.25 and 62.5 µg/mL. In aggregate, BBS extract has a potent antioxidant activity which makes the green biosynthesis of NiONPs easy, economical and safe. The biochemical potential of BBS-NiONPs can be useful in various biomedical and agricultural fields.
机译:由于其易于合成,廉价,无毒性和可再生性,纳米材料的绿色合成正在推进。在本研究中,使用植物化学富含Berberis Balochistanica茎(BBS)提取物用于氧化镍纳米粒子(NIONPS)的绿色合成的生态友好型生物方法。 BBS提取物富含酚类,黄酮类化合物和小檗碱。这些植物化学物质成功减少并稳定了Nino3(绿色)进入Nionps(绿灰色)。通过使用UV可见光谱(305nm的峰值),X射线衍射(尺寸为31.44nm),傅里叶变换红外光谱(鉴定-OH基团和Ni-O形成),能量分散光谱(显示特定的元素性质)和扫描电子显微镜(显示菱体凝聚形状)。 BBS-NIONPS暴露于多种体外生物活动,以确定其有益的生物应用。它们表现出强烈的抗氧化活性:总抗氧化能力(64.77%)和2,2-二苯基-1-Picrylazyl(71.48%);和细胞毒性潜力:用IC50(10.40μg/ ml)盐水虾细胞毒性测定。 BBS-Nionps限制了1000,500和100μg/ ml的细菌和真菌致病生长。另外,BBS-NIONP通过在31.25和62.5μg/ ml增强种子萌发率和幼苗生长,表现出刺激效果。在聚集体中,BBS提取物具有有效的抗氧化活性,使NIONPS的绿色生物合成容易,经济和安全。 BBS-Nionps的生化潜力可用于各种生物医学和农业领域。

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