Organisch-Chemisches Institut, Heidelberg University, Im Neuenheimer Feld 270, 69120, Heidelberg, Germany.
School of Physical Sciences (Chemistry), University of Tasmania, Private Bag 75, Hobart, TAS, 7001, Australia.
Chemistry. 2019 Sep 18;25(52):12180-12186. doi: 10.1002/chem.201902381. Epub 2019 Aug 28.
Precise control of the selectivity in organic synthesis is important to access the desired molecules. We demonstrate a regiospecific annulation of unsymmetrically substituted 1,2-di(arylethynyl)benzene derivatives for a geometry-controlled synthesis of linear bispentalenes, which is one of the promising structures for material science. A gold-catalyzed annulation of unsymmetrically substituted 1,2-di(arylethynyl)benzene could produce two isomeric pentalenes, but both electronic and steric effects on the aromatics at the terminal position of the alkyne prove to be crucial for the selectivity; especially a regiospecific annulation was achieved with sterically blocked substituents; namely, 2,4,6-trimetyl benzene or 2,4-dimethyl benzene. This approach enables the geometrically controlled synthesis of linear bispentalenes from 1,2,4,5-tetraethynylbenzene or 2,3,6,7-tetraethynylnaphthalene. Moreover, the annulation of a series of tetraynes with a different substitution pattern regioselectively provided the bispentalene scaffolds. A computational study revealed that this is the result of a kinetic control induced by the bulky NHC ligands.
在有机合成中精确控制选择性对于获得所需的分子非常重要。我们展示了一种非对称取代的 1,2-二(芳基乙炔基)苯衍生物的区域特异性环化反应,用于几何控制的线性双戊烯的合成,这是材料科学中很有前途的结构之一。金催化的非对称取代的 1,2-二(芳基乙炔基)苯的环化反应可以生成两种同分异构的戊烯,但炔烃末端芳环上的电子和空间效应对于选择性至关重要;特别是带有空间位阻取代基的区域特异性环化反应是可以实现的,例如 2,4,6-三甲基苯或 2,4-二甲基苯。这种方法能够从 1,2,4,5-四乙炔基苯或 2,3,6,7-四乙炔基萘几何控制合成线性双戊烯。此外,一系列具有不同取代模式的四炔烃的环化反应以区域选择性的方式提供了双戊烯支架。计算研究表明,这是由大体积 NHC 配体引起的动力学控制的结果。