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Efficient Photocatalytic degradation of Malachite green dye under visible irradiation by water soluble ZnS:Mn/ZnS core/shell nanoparticles

机译:水溶性ZnS:Mn / ZnS核/壳纳米粒子可见光辐射下孔雀石绿色染料的高效光催化降解

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ZnS:Mn/ZnS core/shell nanoparticles was prepared by two step synthesis method. In first step, oleic acid -coated Mn doped ZnS core nanoparticles were prepared which were charged through ligand exchange. Shell of ZnS NPs was finally deposited upon the surface of charged Mn doped ZnS core. Scanning electron microscopy (SEM) image exhibit morphological confirmation of ZnS:Mn/ZnS core/shell. As Nano ZnS are the most suitable candidates for photocatalyst that extensively involved in degradation and complete mineralization of various toxic organic pollutants owing to its high efficiency, strong oxidizing power, non-toxicity, high photochemical and biological stability, corrosive resistance and low cost. Photodegradation of malachite green is systematically investigated by adding different molar proportional of ZnS:Mn/ZnS core/shell in the dye. The rate of de-coloration of dye is detected by UV-VIS absorption spectroscopy. Efficient detoriation in the colour of dye is attributed to the core/shell morphology of the particles.
机译:通过两步合成方法制备ZNS:Mn / ZnS核/壳纳米颗粒。在第一步中,制备油酸 - 涂覆的Mn掺杂的ZnS核心纳米颗粒,其通过配体交换加入。最终沉积在带电Mn掺杂ZnS芯的表面上的ZnS NPS的壳。扫描电子显微镜(SEM)图像表现出ZNS:Mn / ZnS核心/壳的形态学确认。由于纳米ZNS是最适合光催化剂的候选者,这是由于其高效率,强氧化动力,非毒性,高光化学和生物稳定性,耐腐蚀性和低成本而广泛地参与各种有毒有机污染物的降解和完全矿化。通过在染料中添加不同摩尔成比例的ZnS:Mn / ZnS核/壳体进行系统地研究了孔雀石绿色的光降解。通过UV-Vis吸收光谱检测染料的去色谱率。染料颜色的有效波动归因于颗粒的核心/壳形态。

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