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The stabilization of fused-pentagon fullerene molecules

机译:熔融五边形富勒烯分子的稳定性

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The isolated pentagon rule (IPR) is now widely accepted as a general rule for determining the stability of all-carbon fullerene cages composed of hexagons and pentagons. Fullerenes that violate this rule have been deemed too reactive to be synthesized. The stabilization of non-IPR endohedral fullerenes depends on charge transfer from the encapsulated metal clusters (endo-clusters) to fullerene cages, the electronic properties of empty all-carbon cages, the matching size and geometries of fullerene and endocluster, as well as the strong coordination of the metal ions to fused pentagons. The stability of non-IPR exohedral fullerenes can be rationalized primarily by both the 'strain-relief' and Mocal-aromaticity' principles. This Review focuses on recent work on stabilization of non-IPR fullerenes, including theoretical and empirical principles, experimental methods, and molecular structures of fused-pentagon fullerenes characterized so far. The special chemical properties of non-IPR fullerenes that distinguish them from I PR-satisfying ones are also emphasized.
机译:隔离五边形规则(IPR)现在已被广泛用作确定由六边形和五边形组成的全碳富勒烯笼的稳定性的一般规则。违反该规则的富勒烯被认为反应性太强而无法合成。非IPR内膜富勒烯的稳定性取决于电荷从包封的金属团簇(内聚簇)转移至富勒烯笼,空的全碳笼的电子性质,富勒烯和内团簇的匹配尺寸和几何形状以及金属离子与熔融的五边形之间的强配位。非IPR外表面富勒烯的稳定性可以主要通过“应变消除”和“芳香芳香性”原理来合理化。这篇综述的重点是非IPR富勒烯的稳定化最新研究,包括迄今为止表征的理论和经验原理,实验方法以及熔融五边形富勒烯的分子结构。还强调了非IPR富勒烯的特殊化学性质,使它们与I PR满意的富勒烯相区别。

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