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违反孤立五边形规则(IPR):内笼型非 IPR C98 笼状 Gd2@C98。

Violating the isolated pentagon rule (IPR): endohedral non-IPR C98 cages of Gd2@C98.

机构信息

Institute for Chemical Physics and Department of Chemistry, Xi'an Jiaotong University, Xi'an 710049, China.

出版信息

Inorg Chem. 2012 Feb 20;51(4):2039-45. doi: 10.1021/ic201585j. Epub 2012 Jan 30.

Abstract

The geometric, electronic structure, and thermodynamic stability of large gadolinium-containing endohedral metallofullerenes, Gd(2)@C(98), have been systematically investigated by comprehensive density functional theory calculations combined with statistical mechanics treatments. The Gd(2)@C(2)(230924)-C(98) structure, which satisfies the isolated-pentagon rule (IPR), is determined to possess the lowest energy followed with some stable non-IPR isomers. In order to clarify the relative stabilities at elevated temperatures, entropy contributions are taken into account on the basis of the Gibbs energy at the B3LYP level for the first time. Interestingly, a novel non-IPR Gd(2)@C(1)(168785)-C(98) isomer which has one pair of pentagon adjacency is more thermodynamically stable than the lowest energy IPR species within a wide temperature interval related to fullerene formation. Therefore, the Gd(2)@C(1)(168785)-C(98) is predicted to be the most proper isomer obtained experimentally, which is the largest non-IPR carbon cage found so far. Our findings demonstrate that interaction between metals and carbon cages could stabilize the fused pentagons effectively, and thus, the non-IPR isomers should not be ignored in some cases of endohedral metallofullerenes. The IR features of Gd(2)@C(98) are simulated to assist its future experimental characterization.

摘要

通过综合密度泛函理论计算结合统计力学处理,系统研究了含大量钆的笼状金属富勒烯 Gd(2)@C(98) 的几何、电子结构和热力学稳定性。Gd(2)@C(2)(230924)-C(98)结构满足孤立五边形规则 (IPR),被确定为具有最低能量,随后还有一些稳定的非 IPR 异构体。为了澄清在高温下的相对稳定性,首次基于 B3LYP 水平的吉布斯能量考虑了熵贡献。有趣的是,一种新型的非 IPR Gd(2)@C(1)(168785)-C(98)异构体具有一对五边形相邻,在与富勒烯形成相关的较宽温度范围内比最低能量 IPR 物种更热力学稳定。因此,预测 Gd(2)@C(1)(168785)-C(98)是最有可能在实验中获得的异构体,它是迄今为止发现的最大的非 IPR 碳笼。我们的研究结果表明,金属与碳笼之间的相互作用可以有效地稳定融合的五边形,因此,在某些笼状金属富勒烯的情况下,不应该忽略非 IPR 异构体。模拟了 Gd(2)@C(98)的 IR 特征,以辅助其未来的实验表征。

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