Department of Chemistry, University of Basel , St. Johanns-Ring 19, 4056 Basel, Switzerland.
J Org Chem. 2016 Dec 16;81(24):12303-12317. doi: 10.1021/acs.joc.6b02246. Epub 2016 Nov 28.
Neutral open-shell molecules, in which spin density is delocalized through a helical conjugated backbone, hold promise as models for investigating phenomena arising from the interplay of magnetism and chirality. Apart from a handful of examples, however, the chemistry of these compounds remains largely unexplored. Here, we examine the prospect of extending spin-delocalization over a helical backbone in a model compound naphtho[3,2,1-no]tetraphene, the first helically chiral open-shell hydrocarbon, in which one benzene ring is fused to [5]helicene, forming a phenalenyl subunit. The unpaired electron in this molecule is delocalized over the entire helical core composed of six rings, albeit in a nonuniform fashion, unlike in phenalenyl. In the case of a monosubstituted derivative, the uneven spin-distribution results in a selective σ-dimer formation in solution, as confirmed by 2D NMR spectroscopy. In contrast, the dimerization process is suppressed entirely when four substituents are installed to sterically hinder all reactive positions. The persistent nature of the tetrasubstituted derivative allowed its characterization by EPR, UV-vis, and CD spectroscopies, validating spin-delocalization through a chiral backbone, in accord with DFT calculations. The nonuniform spin-distribution, which dictates the selectivity of the σ-dimer formation, is rationalized by evaluating the aromaticity of the resonance structures that contribute to spin-delocalization.
中性开壳分子中,自旋密度通过螺旋共轭骨架离域,有望成为研究磁与手性相互作用产生的现象的模型。然而,除了少数几个例子外,这些化合物的化学性质在很大程度上仍未得到探索。在这里,我们研究了将自旋离域扩展到模型化合物萘并[3,2,1- no]四苯中的螺旋骨架的前景,该化合物是第一个螺旋手性开壳烃,其中一个苯环与[5]螺旋烯融合,形成苯并菲亚基。在这个分子中,不成对的电子在由六个环组成的整个螺旋核心中离域,尽管不成对电子的分布是非均匀的,与苯并菲不同。在单取代衍生物的情况下,不成对电子的不均匀分布导致在溶液中选择性地形成σ-二聚体,这一点通过 2D NMR 光谱得到证实。相比之下,当安装四个取代基以空间位阻阻止所有反应位置时,二聚化过程完全被抑制。四取代衍生物的持久性使其能够通过 EPR、UV-vis 和 CD 光谱学进行表征,与 DFT 计算一致,证明了通过手性骨架进行自旋离域。通过评估对自旋离域有贡献的共振结构的芳香性,可以合理地解释决定σ-二聚体形成选择性的非均匀自旋分布。