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Green Synthesized of Ag/Ag2O Nanoparticles Using Aqueous Leaves Extracts of Phoenix dactylifera L. and Their Azo Dye Photodegradation

机译:使用叶片DACTYLIFERA L的含水叶子提取物的AG / AG2O纳米粒子合成的绿色及其Azo染料光降解

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摘要

In this study, silver/silver oxide nanoparticles (Ag/Ag2O NPs) were successfully biosynthesized using Phoenix dactylifera L. aqueous leaves extract. The effect of different plant extract/precursor contractions (volume ratio, v/v%) on Ag/Ag2O NP formation, their optical properties, and photocatalytic activity towards azo dye degradation, i.e., Congo red (CR) and methylene blue (MB), were investigated. X-ray diffraction confirmed the crystalline nature of Ag/Ag2O NPs with a crystallite size range from 28 to 39 nm. Scanning electron microscope images showed that the Ag/Ag2O NPs have an oval and spherical shape. UV–vis spectroscopy showed that Ag/Ag2O NPs have a direct bandgap of 2.07–2.86 eV and an indirect bandgap of 1.60–1.76 eV. Fourier transform infrared analysis suggests that the synthesized Ag/Ag2O NPs might be stabilized through the interactions of -OH and C=O groups in the carbohydrates, flavonoids, tannins, and phenolic acids present in Phoenix dactylifera L. Interestingly, the prepared Ag/Ag2O NPs showed high catalytic degradation activity for CR dye. The photocatalytic degradation of the azo dye was monitored spectrophotometrically in a wavelength range of 250–900 nm, and a high decolorization efficiency (84.50%) was obtained after 50 min of reaction. As a result, the use of Phoenix dactylifera L. aqueous leaves extract offers a cost-effective and eco-friendly method.
机译:在该研究中,使用凤凰丁糖L.水叶提取物成功生物合成银/银纳米颗粒(Ag / Ag2O NPS)。不同植物提取物/前体收缩(体积比,v / v%)对Ag / Ag2O Np形成,光学性质和光催化活性的影响,朝向偶氮染料降解,即刚果红色(Cr)和亚甲基蓝(MB) ,被调查了。 X射线衍射证实了Ag / Ag2O NP的结晶性质,微晶尺寸范围为28至39nm。扫描电子显微镜图像显示Ag / Ag2O NP具有椭圆形和球形。 UV-Vis光谱显示Ag / Ag2O NPS具有2.07-2.86eV的直接带隙,间接带隙为1.60-1.76eV。傅里叶变换红外分析表明,合成的Ag / Ag2O NPS可以通过碳水化合物,黄酮类化合物,单宁和酚酸的酚醛酸中的-OH和C = O基团的相互作用来稳定,其制备的Ag / Ag2O NPS显示CR染料的高催化降解活性。将偶氮染料的光催化降解在250-900nm的波长范围内进行分光光度素,在50分钟后得到高脱色效率(84.50%)。结果,使用Phoenix Dactylifera L.含水叶子提取物提供了一种成本效益和生态的方法。

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