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Synthesis and Phase Analysis of CuFeS2 Powders Prepared by Hydrothermal Method

机译:水热法制备CuFes2粉末的合成及相分析

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摘要

In recent years, CuFeS2 optoelectronic materials are widely concerned by scientists because of their advantages of safety, non-toxicity and low price. In this work, the CuFeS2 powders were synthesized by simple hydrothermal co-reduction method, the effects of different heat treatment conditions and different sulfur sources on preparation of CuFeS2 phase were systematically studied with CuCl2 center dot 2H(2)O and FeCl3 center dot 6H(2)O as raw materials. The phase structure and surface morphology of the samples were analyzed by X-ray Powder diffractometer (XRD) and scanning electron microscope (SEM). It was found that when the sulfur source was sulfur powder, the sample crystallized well and has no impurity formation. With the reaction temperature extending to 220 degrees C, the diffraction peak intensity is obviously improved while the grain size decreases slightly with the increase of temperature. The extension of heat treatment temperature and holding time is favorable for preparation of CuFeS2 power and the impurity Fe3O4 crystal can be effectively eliminated by prolonging the time and increasing temperature. With the reaction temperature extending to 220 degrees C, the shorter the time required for Fe3O4 crystal to disappear. Therefore, the optimum heat treatment temperature for preparing CuFeS2 powder is 220 degrees C and the time is 20 h.
机译:近年来,由于它们的安全性,无毒和低价格,Cufes2光电材料被科学家们广泛关注。在这项工作中,通过简单的水热共同还原方法合成了CuFes2粉末,用CuCl2中心点2H(2)O和FECL3中心点6小时,通过简单的热处理条件和不同硫来源对Cufes2相的制备的影响。 (2)o作为原料。通过X射线粉末衍射仪(XRD)和扫描电子显微镜(SEM)分析样品的相结构和表面形态。发现当硫源是硫粉末时,样品结晶井并没有杂质形成。随着反应温度延伸至220℃的反应温度,显着提高了衍射峰强度,而晶粒尺寸随温度的增加而降低。热处理温度和保持时间的延伸是有利于制备CuFes2的功率,并且通过延长时间和增加温度,可以有效地消除杂质Fe3O4晶体。通过延伸到220℃的反应温度,Fe3O4晶体消失的时间越短。因此,用于制备CuFes2粉末的最佳热处理温度为220℃,时间为20小时。

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