Department of Chemistry & Biochemistry and Materials Science Institute, University of Oregon, Eugene, Oregon, 97403-1253, USA.
Center for Advanced Materials Characterization at Oregon (CAMCOR), University of Oregon, Eugene, Oregon, 97403-1433, USA.
Chemistry. 2023 Jul 14;29(40):e202301153. doi: 10.1002/chem.202301153. Epub 2023 Jun 5.
Fusion of aromatic subunits to stabilize an antiaromatic core allows the isolation and study of otherwise unstable paratropic systems. A complete study of a series of six naphthothiophene-fused s-indacene isomers is herein described. Additionally, the structural modifications resulted in increased π-π overlap in the solid state, which was further explored through changing the sterically blocking mesityl group to (triisopropylsilyl)ethynyl in three derivatives. The computed antiaromaticity of the six isomers is compared to the observed physical properties, such as NMR chemical shift, UV-vis, and CV data. We find that the calculations predict the most antiaromatic isomer and give a general estimation of the relative degree of paratropicity for the remaining isomers, when compared to the experimental results.
芳基亚基的融合可以稳定反芳香核,从而允许分离和研究否则不稳定的反芳香体系。本文完整描述了一系列六个萘并噻吩稠合 s-茚并异构体的研究。此外,结构修饰导致在固态中增加了π-π重叠,这通过在三个衍生物中将空间位阻较大的均三甲基取代基变为(三异丙基硅基)乙炔基进一步得到了探索。计算得到的六个异构体的反芳香性与观察到的物理性质(如 NMR 化学位移、UV-vis 和 CV 数据)进行了比较。我们发现,与实验结果相比,计算预测了最反芳香的异构体,并对其余异构体的相对反芳香性程度进行了大致估计。