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PREPARATION AND CHARACTERIZATION OF POROUS COPPER POWDER BY THERMAL DECOMPOSITION OF COMPLICATED COPPER OXALATE

机译:复杂铜酸铜热分解的多孔铜粉的制备与表征

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Based on Thermogravimetric and Differential thermal analysis (TGA-DTA), porous copper powder is prepared by thermal decomposition of complicated copper oxalate. The effects of various conditions on the morphology, crystalline grain size and specific surface area of copper powder were investigated, including temperature, duration, mixing ratio of nitrogen and hydrogen. Furthermore, composition and morphologies of the products were characterized by X-ray diffraction (XRD), Scanning electron microscope (SEM) and BET adsorption isotherm. It is found that porous copper powder was produced under optimum conditions. The specific surface area is over 6.74 m -g"1, and average pore size in particles is about 30.3 nm. After comparison of SEM images, the final product Cu well inherits the morphology of the precursor, thus a mechanism of in-situ decomposition is proposed.
机译:基于热重分析和差分热分析(TGA-DTA),多孔铜粉通过热分解的复杂铜酸铜酸盐制备。研究了各种条件对铜粉的形态,结晶晶粒尺寸和比表面积的影响,包括温度,持续时间,氮和氢的混合比。此外,产物的组成和形态通过X射线衍射(XRD),扫描电子显微镜(SEM)和BET吸附等温线。发现在最佳条件下生产多孔铜粉。比表面积超过6.74m-g“1,颗粒中的平均孔径约为30.3nm。比较SEM图像后,最终产品Cu良好地继承了前体的形态,因此是一种原位分解的机制提出。

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