首页> 外文期刊>Journal of the American Chemical Society >18,18'-Dihexyl[9,9']biphenanthro[9,10-b]triphenylene: Construction and Consequences of a Profoundly Hindered Aryl-Aryl Single Bond
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18,18'-Dihexyl[9,9']biphenanthro[9,10-b]triphenylene: Construction and Consequences of a Profoundly Hindered Aryl-Aryl Single Bond

机译:18,18'-二己基[9,9']联菲[9,10-b]三亚苯基:一个明显受阻的芳基-芳基单键的结构和结果

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摘要

The title compound, 1-Hex, was synthesized by the Zr-mediated biphenylation of 4,4'-dihexyloctabromobiphenyl using (Li(THF)_4)_2·Zr(biphe)_3, where biphe is the 2,2'-biphenyldiyl ligand, in 5% isolated yield. Two independent X-ray diffraction analyses revealed that arene 1-Hex possesses a highly strained and hindered aryl-aryl single bond. This bond causes the phenanthro[9,10-b]triphenylene (PTP) moieties to twist (anthracene subunit dihedral, 69°); the interlocked, helical, homochiral PTP moieties give rise to effective D_2 symmetry. The calculated adiabatic homolytic bond dissociation energy of this strained bond is only 67 kcal/mol, but nonetheless the bond exhibits a surprisingly normal length (1.49 A); the reason is elongation only slowly releases strain. Variable temperature NMR revealed two dynamic processes: hexyl rotation (12.0 ± 0.4 kcal/mol) and inversion of chirality (15.2 ± 0.6 kcal/mol). DFT calculations provide rate-determining transitions states, whose energies agree with measured values, and provide insight to the mechanism of these processes. Rotation about the central bond is not involved in either observed process. Calculations demonstrate that rotation does not involve a simple torsion of the equilibrium structure, but rather a complex movement with a barrier of 49 kcal/mol from a slipped-parallel, C_(2h) intermediate.
机译:通过使用(Li(THF)_4)_2·Zr(biphe)_3的Zr介导的4,4'-二己基六溴联苯的Zr介导的联苯合成了标题化合物1-Hex,其中biphe是2,2'-联苯二基配体,分离产率为5%。两次独立的X射线衍射分析表明,芳烃1-Hex具有高度应变和受阻的芳基-芳基单键。该键导致菲并[9,10-b]三亚苯基(PTP)部分扭曲(蒽亚基二面体,69°);互锁的螺旋同手性PTP部分产生有效的D_2对称性。计算得出的该应变键的绝热均质键解离能仅为67 kcal / mol,但该键却显示出令人惊讶的正常长度(1.49 A);原因是伸长率只能缓慢释放应变。可变温度NMR显示了两个动态过程:己基旋转(12.0±0.4 kcal / mol)和手性反转(15.2±0.6 kcal / mol)。 DFT计算提供了速率确定的过渡状态,其能量与测量值一致,并提供了对这些过程机理的了解。围绕中心键的旋转不参与任何一个观察到的过程。计算表明,旋转不涉及平衡结构的简单扭转,而是来自滑动平行C_(2h)中间物的势垒为49 kcal / mol的复杂运动。

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