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CONFIRMATION BY X-RAY DIFFRACTION OF THE ENDOHEDRAL NATURE OF THE METALLOFULLERENE Y-AT-C-82

机译:通过X射线衍射确认金属富勒烯Y-AT-C-82的内表面性质

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THE synthesis of fullerenes encapsulating various metal atoms within the carbon cage (endohedral metallofullerenes) has stimulated wide interest(1,2) because of their unusual structural and electronic properties. Most of the metallofullerenes prepared so far have been based on C-82, and have incorporated lanthanum(1,3-5) yttrium(6,7), scandium(8) (10) and most of the lanthanide elements(11,12) Although there has been some debate about the endohedral nature of these compounds(2,13,14), observations using scanning tunnelling microscopy(15,16), extended X-ray absorption fine structure(17,18), transmission electron micrscopy(19) and electron spin; resonance(3,6) (8,10) have strongly suggested that the metal atoms are indeed inside the fullerene cages; theoretical calculations(20,21) also indicate that this is the case. But until now, no structural model has been derived experimentally to confirm the endohedral nature of the metallofullerenes. Here we report the results of a synchrotron X-ray powder diffraction study of Y@C-82 that confirms that the yttrium atom is located within the carbon cage. The yttrium atom is displaced from the centre of the C-82 molecule and is strongly bound to the carbon cage. [References: 30]
机译:在碳笼中包裹各种金属原子的富勒烯(内表面金属富勒烯)的合成因其不寻常的结构和电子特性而引起了广泛的兴趣(1,2)。到目前为止,大多数制备的金属富勒烯都基于C-82,并结合了镧(1,3-5)钇(6,7),scan(8)(10)和大多数镧系元素(11,12)。 )尽管关于这些化合物的内面性质存在争议(2,13,14),但使用扫描隧道显微镜观察(15,16),扩展的X射线吸收精细结构(17,18),透射电子显微镜观察(2,13,14)。 19)和电子自旋;共振(3,6)(8,10)强烈表明,金属原子确实在富勒烯笼子内部。理论计算(20,21)也表明是这种情况。但是直到现在,还没有实验性地得出结构模型来证实金属富勒烯的内面性质。在这里,我们报告Y @ C-82的同步加速器X射线粉末衍射研究的结果,该结果证实了钇原子位于碳笼中。钇原子从C-82分子的中心移位,并牢固地结合在碳笼上。 [参考:30]

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