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Synthesis of ZnS Nanoparticles by Spray Pyrolysis: Morphology Control Using the Same Precursors in Different Reactor Systems

机译:喷雾热解法合成ZnS纳米粒子:在不同反应器系统中使用相同前体的形态控制

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Nanoparticles of zinc sulfide, a Ⅱ-Ⅵ semiconductor with a band gap in the near UV region, have potential applications in solar cells, displays, photocatalysis, bioimaging, and other fields. We have prepared ZnS nanoparticles through spray pyrolysis using zinc acetate and thiourea as precursors. For these same precursors, we used different reaction systems to produce nanoparticles with different size and properties. In one system, the precursors were premixed and heated together in a single reaction line. The particles produced in this system ranged from tens to hundreds of nanometers in diameter, and in most cases they were hollow or porous. In the other system, two separate atomizers and reaction lines have been used for the two precursors. Therefore, the two precursors were evaporated and heated in different lines and were mixed as vapors. Smaller (below 20 nm diameter), dense particles of irregular geometry were obtained in this system. Moreover, in this second system, particles of ZnO, ZnS, and intermediate compositions can be produced.
机译:硫化锌的纳米粒子是一种在紫外附近具有带隙的Ⅱ-Ⅵ型半导体,在太阳能电池,显示器,光催化,生物成像等领域具有潜在的应用前景。我们使用乙酸锌和硫脲作为前体,通过喷雾热解制备了ZnS纳米颗粒。对于这些相同的前体,我们使用了不同的反应系统来生产具有不同尺寸和性质的纳米颗粒。在一个系统中,将前体预混合并在单个反应管线中一起加热。在该系统中产生的颗粒直径范围为数十至数百纳米,并且在大多数情况下它们是中空的或多孔的。在另一个系统中,两个单独的雾化器和反应管线已用于两种前体。因此,将两种前体蒸发并在不同的管线中加热,并作为蒸气混合。在该系统中获得了较小(直径小于20 nm)的不规则几何形状的致密颗粒。而且,在该第二系统中,可以生产ZnO,ZnS和中间组合物的颗粒。

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