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首页> 外文期刊>Optik: Zeitschrift fur Licht- und Elektronenoptik: = Journal for Light-and Electronoptic >Synthesis of zinc oxide nanoparticles from Gynostemma pentaphyllum extracts and assessment of photocatalytic properties through malachite green dye decolorization under UV illumination-A Green Approach
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Synthesis of zinc oxide nanoparticles from Gynostemma pentaphyllum extracts and assessment of photocatalytic properties through malachite green dye decolorization under UV illumination-A Green Approach

机译:从UV照明下通过孔雀石绿色染料脱色的血管脑偏瘫提取物与光催化特性的氧化锌纳米粒子的合成及光催化特性 - 绿色方法

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摘要

Green synthesis of ZnO nanoparticles gained huge attention due to eco-friendly protocol to reduce the destructive effect of chemical synthesis mostly used in the industry. This study focused on green chemistry protocol to synthesis Gynostemma pentaphyllum zinc oxide nanoparticles (GPZnO-NPs) from Gynostemma plant extract using the co-precipitation method. The GP-ZnO-NPs decolorization performance was assessed by removing toxic dye Malachite Green (MG) under UV illumination. The hexagonal wurtzite structure with an average size of 35.41 nm was confirmed by X-ray powder diffraction (XRD) analysis. The FE-TEM analysis revealed the nanoparticles' hexagonal shape, and electron diffraction analysis (EDX) analyzes the percentage of Zn & oxygen of the nanostructures. The Fourier-transform infrared spectroscopy (FT-IR) analysis was revealed the functional group responsible for forming Gp-ZnO-NPs. Besides, the Photoluminescence study revealed the electron-hole pairs on the surface of the catalyst. The X-ray photoelectron spectroscopy (XPS) analysis exposed the chemical compositions (Zn, C & O) and the nanostructure's elemental state. The newly synthesized nano catalyst was applied to investigate the photocatalytic activity of Malachite Green dye under UV illumination. The photocatalyst (GP-ZnO-NPs) exhibited the decolorization of 89 % (10 mg/L) toxic MG dye within 180 min observation. The hexagonal nanoparticle structure creates a more active site to interact with the poisonous dye molecules to proceed the reaction fast. In addition, the nano catalyst can be used for five times without losing its activity. This study highly recommends the GP-ZnO-NPs to remove toxic dye for a safer environment as a greener nano catalyst.
机译:氧化锌纳米颗粒的绿色合成因其环保协议而受到广泛关注,以减少工业上常用的化学合成的破坏性影响。本研究以绞股蓝植物提取物为原料,采用共沉淀法合成绞股蓝氧化锌纳米颗粒(GPZnO NP)的绿色化学方案为重点。通过在紫外光照射下去除有毒染料孔雀石绿(MG)来评估GP-ZnO NPs的脱色性能。X射线粉末衍射(XRD)分析证实了六方纤锌矿的结构,其平均尺寸为35.41 nm。FE-TEM分析揭示了纳米颗粒的六角形形状,电子衍射分析(EDX)分析了纳米结构中锌和氧的百分比。傅立叶变换红外光谱(FT-IR)分析揭示了负责形成Gp-ZnO纳米颗粒的官能团。此外,光致发光研究揭示了催化剂表面的电子-空穴对。X射线光电子能谱(XPS)分析揭示了化学成分(锌、碳和氧)和纳米结构的元素状态。将新合成的纳米催化剂用于研究孔雀石绿染料在紫外光照射下的光催化活性。光催化剂(GP ZnO NPs)在180分钟内对89%(10 mg/L)有毒的镁染料进行脱色。六边形纳米颗粒结构创造了一个更活跃的位置,与有毒的染料分子相互作用,从而快速进行反应。此外,纳米催化剂可以使用五次而不丧失其活性。GP建议将纳米染料作为一种更安全的催化剂来去除NPs。

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