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Solar physical vapor deposition: A new approach for preparing magnesium titanate nanopowders

机译:太阳物理气相沉积:一种制备钛酸镁纳米粉的新方法

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Solar energy is a major factor in the equation of energy, because of the unlimited potential of the sun that eclipses all other renewable sources of energy. Solar physical vapor deposition (SPVD) is a core innovative, original and environmentally friendly process to prepare nanocrystalline materials in a powder form. The principle of this process is to melt the material under concentrated solar radiation, which evaporates and condenses as nanopowders on a cold surface. We synthesized nanopowders of magnesium titanate by the SPVD process at PROMES Laboratory in Odeillo-Font Romeu, France. The SPVD system consists of a parabolic mirror concentrator, a mobile plane mirror ("heliostat") tracking the sun and a solar reactor "heliotron". The synthesized nanopowders were analyzed by X-ray diffraction (XRD) to know their crystalline structure and scanning electron microscopy (SEM) was used for determining the surface morphology. We have shown that the characteristics of obtained nanotitanates were determined by the targets' composition and SPVD process parameters such as the working pressure inside the solar reactor and evaporation duration (process time).
机译:太阳能是能源方程式中的主要因素,因为太阳的无限潜力使其他所有可再生能源都黯然失色。太阳物理气相沉积(SPVD)是一种创新的,新颖且环保的核心工艺,用于制备粉末形式的纳米晶体材料。该过程的原理是在集中的太阳辐射下熔化材料,该材料会在纳米颗粒上蒸发并凝结在冷的表面上。我们通过SPVD工艺在法国Odeillo-Font Romeu的PROMES实验室合成了钛酸镁的纳米粉体。 SPVD系统由一个抛物面镜集中器,一个跟踪太阳的移动平面镜(“定日镜”)和一个太阳能反应堆“定日镜”组成。通过X射线衍射(XRD)分析合成的纳米粉末,以了解其晶体结构,并使用扫描电子显微镜(SEM)确定其表面形态。我们已经表明,所获得的纳米钛酸盐的特性取决于目标的组成和SPVD工艺参数,例如太阳能反应器内部的工作压力和蒸发持续时间(工艺时间)。

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