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首页> 外文期刊>Physical chemistry chemical physics: PCCP >Concave or convex pi-dimers: the role of the pancake bond in substituted phenalenyl radical dimers
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Concave or convex pi-dimers: the role of the pancake bond in substituted phenalenyl radical dimers

机译:凹或凸pi二聚体:煎饼键在取代的菲烯基自由基二聚体中的作用

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摘要

pi-stacking in dimers of phenalenyl represents the prototypical pancake bonding between radicals. This type of pi-stacking aggregate is a key structural motif in conducting organic and multifunctional materials. It is driven by the bonding combination of the singly occupied molecular orbitals (SOMOs) of the monomers resulting in pi-stacking contacts that are significantly shorter than the sum of the van der Waals (vdW) radii. Analysis of 56 structures from the literature (mostly from the Cambridge Structural Database) coupled with DFT computations shows that the central C center dot center dot center dot C contact in derivatives of phenalenyl does not contribute directly to the pi-stacking pancake bonding in accordance with the fact that the SOMO coefficient is zero at the central carbon. This central C center dot center dot center dot C contact is typically longer than the contacts between the SOMO bearing alpha-carbons with a convex dimer shape with one known exception of a complex containing bulky tert-butyl groups. This unusual case of a concave shaped dimer with a significantly shorter central C center dot center dot center dot C contact is due to the steric repulsions at the periphery of the molecule pushing the central atoms closer together relative to the alpha-alpha-contacts which provide the attractive driving force for the multicenter pancake bonding. The diradical character of the pancake bonding is revealed by the analysis of the unpaired electron density based on high-level multireference theory.
机译:苯二烯基二聚体中的pi堆积表示自由基之间的原型煎饼键。这种类型的pi堆积聚集体是传导有机和多功能材料的关键结构图案。它是由单体的单占据分子轨道(SOMO)的键合组合驱动的,从而导致pi堆积接触明显短于范德华(vdW)半径之和。根据文献(主要来自剑桥结构数据库)对56种结构的分析以及DFT计算的结果表明,苯丙烯基衍生物中的中心C中心点中心点中心点C点接触不会直接导致pi-stacking薄饼键合SOMO系数在中心碳处为零的事实。该中心C中心点中心点中心点C点接触通常长于具有凸二聚体形状的带有SOMO的α-碳之间的接触,一个已知的例外是含有大量叔丁基的配合物。凹形二聚体的这种不寻常情况是中心C中心点中心点中心点C点接触明显更短,这是由于分子外围的空间排斥将中心原子相对于α-α接触推近了多中心煎饼粘合的吸引力驱动力。通过基于高级多参考理论的不成对电子密度分析,揭示了薄煎饼键的双自由基特性。

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