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Structural study of carbon nanomaterials prepared by chlorination of tungsten carbide and bis(cyclopentadienyl)tungsten dichloride

机译:碳化钨与双(环戊二烯基)二氯化钨氯化制备碳纳米材料的结构研究

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摘要

Hollow carbon nanobags have been obtained by the chlorination of bis(cyclopentadi-enyl)tungsten dichloride (W(C5H5)2Cl2) at 400 and 900 °C. Transmission electron microscopy images indicate an incipient graphitisation at higher reaction temperatures and an increase in the average dimensions of the particles. When using tungsten carbide (WC) as precursor, carbide-derived carbon has been observed at 900 °C, whereas at lower temperatures core-shell-like structures have been found as intermediate reaction steps. In both type of materials, electron energy-loss spectroscopy shows a very similar sp~2 carbon bonding content (~94%). Textural studies show Type 1 adsorption isotherms with surface areas of 1250 and 1320 m~2/g for WC and W(C5H5)2Cl2 respectively at the higher temperature treatment.
机译:通过在400和900°C下氯化双(环戊二烯基)二氯化钨(W(C5H5)2Cl2)获得了空心碳纳米袋。透射电子显微镜图像表明,在较高的反应温度下石墨化初期,并且颗粒的平均尺寸增加。当使用碳化钨(WC)作为前体时,在900°C时观察到碳化物衍生的碳,而在较低温度下,发现核壳状结构是中间反应步骤。在两种材料中,电子能量损失谱都显示出非常相似的sp〜2碳键含量(〜94%)。纹理研究表明,在较高温度下,WC和W(C5H5)2Cl2的表面积分别为1250和1320 m〜2 / g的1型吸附等温线。

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