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The influence of metals on the phase transformations of fullerenes at high pressure and high temperatures

机译:金属对富勒烯高压高温相变的影响

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Phase transformations in crystalline fullerenes C60 and C70 with additions of two groups of metals (7 at. each): carbide-forming (V and nichrome Ni20Cr80) and non-carbide-forming (Ag and Ni) at a high pressure of 8 GPa and high temperatures of 500-1100 degrees C have been investigated by X-ray diffraction and Raman spectroscopy. The measurements were carried out ex situ after a thermobaric treatment. Two groups of phase transformations were found: crystalline fullerenes into amorphous graphite and the formation of carbides VC, V2C and Cr3C2. The addition of V and nichrome stabilizes fullerene molecules and raises the temperature of transformation of crystalline fullerene into amorphous graphite by hundreds of degrees, while the addition of Ag and Ni does not have such an effect. Thus, the described effect is explained by chemical interaction. Carbides in systems with V and nichrome are formed mainly in the interaction of metal with amorphous graphite, and not with crystalline fullerene. The result is explained on the basis of a comparison of the interaction of metal atoms with fullerene molecules and with individual carbon atoms.
机译:通过X射线衍射和拉曼光谱研究了在8 GPa的高压和500-1100°C的高温下,添加两组金属(各7 at.%)的结晶富勒烯C60和C70的相变:碳化物形成(V和镍铬合金Ni20Cr80)和非碳化物形成(Ag和Ni)。测量是在温压处理后非原位进行的。发现了两组相变:结晶富勒烯转化为无定形石墨和碳化物VC、V2C和Cr3C2的形成。V和镍铬合金的加入稳定了富勒烯分子,使结晶富勒烯转变为无定形石墨的温度提高了数百度,而Ag和Ni的加入则没有这样的效果。因此,所描述的效应可以通过化学相互作用来解释。具有V和镍铬合金的体系中的碳化物主要是在金属与无定形石墨的相互作用中形成的,而不是与结晶富勒烯相互作用形成的。该结果是在比较金属原子与富勒烯分子以及单个碳原子相互作用的基础上解释的。

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