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首页> 外文期刊>Chemistry: A European journal >Reactivity and Regioselectivity of Noble Gas Endohedral Fullerenes Ng@C-60 and Ng(2)@C-60 (Ng = He-Xe)
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Reactivity and Regioselectivity of Noble Gas Endohedral Fullerenes Ng@C-60 and Ng(2)@C-60 (Ng = He-Xe)

机译:稀有气体内表面富勒烯Ng @ C-60和Ng(2)@ C-60的反应性和区域选择性(Ng = He-Xe)

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摘要

Recently, it was shown that genuine Ng-Ng chemical bonds are present in the endohedral fullerenes Ng(2)@C-60 in the case of Ng=Xe, while it is more debatable whether a chemical bond exist for Ng = Ar and Kr. The lighter homologues with helium and neon are weakly bonded van der Waals complexes. The presence of a noble gas dimer inside the cage is expected to modify the exohedral reactivity of the C-60 cage with respect to that of free C-60. To investigate the impact of encapsulated diatomic noble gas molecules on the chemical reactivity of C-60, we analyzed the thermodynamics and the kinetics of [4+2] Diels-Alder cycloaddition of 1,3-cis-butadiene at all non-equivalent bonds in free C-60, Ng@C-60, and Ng(2)@C-60 (Ng=He, Ne, Ar, Kr, and Xe). Our BP86/TZP calculations reveal that introduction of single noble gas atoms in Ng@C-60 and noble gas dimers He-2 and Ne-2 in Ng(2)@C-60 has almost no effect on the exohedral reactivity compared to free C-60, in agreement with experimental results. In all these cases cycloaddition is clearly favored at the [6,6] bonds in the fullerene cage. For the endohedral compounds He-2@C-60 and Ne-2@C-60 a slight preference (by less than 2 kcal mol(-1)) for bonds closer to the C-5 symmetry axis is found. This picture changes dramatically for the endohedral compounds with heavier noble gas dimers. Encapsulation of these noble gas dimers clearly enhances the reaction, both under thermodynamic and kinetic control. Moreover, in the case of Xe-2@C-60, addition to [6,6] and [5,6] bonds becomes equally viable. These reactivity changes in endohedral fullerenes are attributed to stabilization of the LUMO, increased fullerene strain energy, and greater compression of the encapsulated Ng(2) unit along the He to Xe series.
机译:最近,研究表明在Ng = Xe的情况下,内面富勒烯Ng(2)@ C-60中存在真正的Ng-Ng化学键,而对于Ng = Ar和Kr是否存在化学键则更具争议性。氦和氖的较轻同系物是弱结合的范德华复合物。笼子内稀有气体二聚体的存在预计会改变C-60笼子相对于游离C-60的外表面反应性。为了研究包封的双原子稀有气体分子对C-60化学反应性的影响,我们分析了在所有非等价键处1,3-顺丁二烯的[4 + 2] Diels-Alder环加成反应的热力学和动力学。游离C-60,Ng @ C-60和Ng(2)@ C-60(Ng = He,Ne,Ar,Kr和Xe)。我们的BP86 / TZP计算表明,与游离态相比,在Ng @ C-60中引入单个稀有气体原子以及在Ng(2)@ C-60中引入稀有气体二聚体He-2和Ne-2几乎不影响外表面反应性C-60,与实验结果一致。在所有这些情况下,富勒烯笼中的[6,6]键显然都倾向于环加成。对于内面体化合物He-2 @ C-60和Ne-2 @ C-60,对于靠近C-5对称轴的键,存在轻微的偏爱(小于2 kcal mol(-1))。对于具有较重的惰性气体二聚体的内面体化合物,此图发生了巨大变化。这些惰性气体二聚体的包封在热力学和动力学控制下均明显增强了反应。此外,在Xe-2 @ C-60的情况下,除了[6,6]和[5,6]键外,它们同样具有可行性。内面富勒烯的这些反应性变化归因于LUMO的稳定,富勒烯应变能的增加以及沿He到Xe系列的Ng(2)单元的更大压缩。

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