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一种不可能的单核金属簇被包封在一个常见的富勒烯笼中:YCN@C(s)(6)-C82。

An improbable monometallic cluster entrapped in a popular fullerene cage: YCN@C(s)(6)-C82.

机构信息

Hefei National Laboratory for Physical Sciences at Microscale & Department of Materials Science and Engineering, University of Science and Technology of China, Hefei 230026, China.

出版信息

Sci Rep. 2013;3:1487. doi: 10.1038/srep01487.

Abstract

Since the first proposal that fullerenes are capable of hosting atoms, ions, or clusters by the late Smalley in 1985, tremendous examples of endohedral metallofullerenes (EMFs) have been reported. Breaking the dogma that monometallofullerenes (mono-EMFs) always exist in the form of M@C2n while clusterfullerenes always require multiple (two to four) metal cations to stabilize a cluster that is unstable as a single moiety, here we show an unprecedented monometallic endohedral clusterfullerene entrapping an yttrium cyanide cluster inside a popular C82 cage--YCN@C(s)(6)-C82. X-ray crystallography and (13)C NMR characterization unambiguously determine the cage symmetry and the endohedal cyanide structure, unexpectedly revealing that the entrapped YCN cluster is triangular. The unprecedented monometallic clusterfullerene structure unveiled by YCN@C(s)(6)-C82 opens up a new avenue for stabilizing a cluster by a single metal cation within a carbon cage, and will surely stimulate further studies on the stability and formation mechanism of EMFs.

摘要

自 1985 年 Smalley 首次提出富勒烯能够容纳原子、离子或团簇以来,已经报道了大量的内包金属富勒烯(EMFs)的例子。打破了单金属富勒烯(mono-EMFs)总是以 M@C2n 的形式存在,而团簇富勒烯总是需要多个(两个到四个)金属阳离子来稳定一个作为单一部分不稳定的团簇的教条,在这里,我们展示了一个前所未有的单金属内包团簇富勒烯,将一个钇氰化物团簇包裹在一个流行的 C82 笼内——YCN@C(s)(6)-C82。X 射线晶体学和 (13)C NMR 表征明确确定了笼状对称性和内包氰化物结构,出人意料地揭示了被包裹的 YCN 团簇是三角形的。YCN@C(s)(6)-C82 揭示的前所未有的单金属团簇富勒烯结构为在碳笼内用单个金属阳离子稳定团簇开辟了新途径,肯定会激发对 EMFs 的稳定性和形成机制的进一步研究。

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