Department of Chemistry and Biochemistry, Miami University, Oxford, Ohio 45056, United States.
J Org Chem. 2010 Dec 17;75(24):8627-36. doi: 10.1021/jo1021025. Epub 2010 Nov 17.
The o-phenylenes represent a fundamental class of conjugated polymers that, unlike the isomeric p-phenylenes, should exhibit rich conformational behavior. Recently, we reported the synthesis and characterization of a series of o-phenylene oligomers featuring unusual electronic properties, including surprisingly long-range delocalization as measured by UV-vis spectroscopy and hypsochromic shifts in fluorescence maxima with increasing length. To rationalize these properties, we hypothesized that the oligomers predominantly assume a stacked helical conformation in solution. This assertion, however, was supported by only indirect evidence. Here we present a thorough investigation of the conformational behavior of this series of o-phenylenes by dynamic NMR spectroscopy and computational chemistry. EXSY experiments, in combination with other two-dimensional NMR techniques, provided full (1)H chemical shift assignments for at least the two most prevalent conformers for each member of the series (hexamer to dodecamer). GIAO density functional theory calculations were then used to relate the NMR data to specific molecular geometries. We have found that the o-phenylenes do indeed assume stacked helical conformations with disorder occurring at the ends. Thus, the o-phenylene motif appears to have great potential as a means to organize arenes into predictable three-dimensional arrangements. Our results also illustrate the power of (1)H NMR GIAO predictions in the solution-phase conformational analysis of oligomers, particularly those with a high density of aromatic subunits.
邻苯撑代表了一类基本的共轭聚合物,与异构的对苯撑不同,它们应该表现出丰富的构象行为。最近,我们报道了一系列具有不寻常电子性质的邻苯撑寡聚物的合成和表征,包括通过紫外可见光谱测量的惊人长程离域和荧光最大值随长度增加的蓝移。为了合理化这些性质,我们假设寡聚物在溶液中主要采取堆积螺旋构象。然而,这一断言仅得到间接证据的支持。在这里,我们通过动态 NMR 光谱和计算化学对该系列邻苯撑的构象行为进行了全面研究。EXSY 实验与其他二维 NMR 技术相结合,为该系列的每个成员(六聚体到十二聚体)的至少两种最常见构象提供了完整的(1)H 化学位移分配。然后,使用 GIAO 密度泛函理论计算将 NMR 数据与特定的分子几何形状联系起来。我们发现,邻苯撑确实采取了堆积螺旋构象,并且在末端存在无序。因此,邻苯撑基序似乎具有将芳烃组织成可预测的三维排列的巨大潜力。我们的结果还说明了(1)H NMR GIAO 预测在寡聚物溶液相构象分析中的作用,特别是对于那些具有高芳香族亚基密度的寡聚物。