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首页> 外文期刊>International Journal of Quantum Chemistry >24 IPR isomers of fullerene C _(84): Cage deformation as geometrical characteristic of local strains
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24 IPR isomers of fullerene C _(84): Cage deformation as geometrical characteristic of local strains

机译:富勒烯C _(84)的24种IPR异构体:笼形变形作为局部应变的几何特征

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摘要

The structures of 24 IPR-isomers of C _(84) fullerene with distributed single, double and delocalized bonds are presented. Obtained results are fully supported by DFT quantum-chemical calculations of electronic and geometrical structures of these isomers. Two reasons of instability of fullerene molecules are their radical origin and/or high local strain. Distortion of pentagons as well as hexagons with alternating single and double bonds is the most significant geometrical parameter reflecting local strain of a molecule. These distortions are measured as maximal dihedral angles of those cycles and reach 20 degrees in mostly deformed hexagons and pentagons. In contrast high values of dihedral angles in hexagons with delocalized π-bonds are typical for stable isomers. Other geometric parameters such as valence angles, sums of valence angles and dihedral angles between approximate planes of fused rings have no marked influence on stability. The development of strain-related criteria for fullerene stability will be helpful in the prediction which isomers might potentially be observable in experiment.
机译:介绍了具有分布的单键,双键和离域键的C _(84)富勒烯24种IPR异构体的结构。这些异构体的电子和几何结构的DFT量子化学计算完全支持了获得的结果。富勒烯分子不稳定的两个原因是它们的自由基起源和/或高局部应变。具有交替的单键和双键的五边形以及六边形的变形是反映分子局部应变的最重要的几何参数。这些变形被测量为那些循环的最大二面角,并在变形最大的六边形和五边形中达到20度。相比之下,具有离域π键的六边形中高的二面角值对于稳定的异构体而言是典型的。其他几何参数,例如化合价环,化合环近似平面之间的化合价和二面角之和,对稳定性没有显着影响。富勒烯稳定性的应变相关标准的发展将有助于预测在实验中可能观察到的异构体。

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