Institute of Chemical Sciences, University of Peshawar, Old Jamrud Road, Qadir Abad, Peshawar 25120, Khyber Pakhtunkhwa, Pakistan.
Department of Chemistry, Sungkyunkwan University, Suwon 16419, Republic of Korea.
Chem Commun (Camb). 2022 Sep 1;58(71):9851-9854. doi: 10.1039/d2cc03161b.
Benzene derivatives are readily available and stable sources of substrates that can be transformed into complex three-dimensional structures asymmetric synthesis. The increasing complexity and chirality of products are crucial for functional materials and drug discovery. While planar aromatics can be converted into enantioenriched products by catalytic asymmetric dearomatization reactions, most of the methods are limited to heteroarenes and activated arenes. Available transition metal-catalyzed and/or photoredox methods using nonactivated arenes are rare. This paper highlights the most recent studies directed toward the development of the first organocatalytic asymmetric dearomatizing strategy to access complex stereochemical products from nonactivated arenes harnessing the unique reactivity of generated chiral vinylidene -quinone methides (VQMs). With this methodology, nonactivated benzenes were regioselectively converted into chiral spirocyclic products and chiral oxahelicenes with excellent stereoselectivities. Mechanistic studies revealed the formation of a chiral VQM that disrupts the aromaticity of benzenes a hetero-Diels-Alder reaction.
苯衍生物是易得且稳定的底物来源,可以转化为具有复杂三维结构的不对称合成产物。产物的复杂性和手性的增加对于功能材料和药物发现至关重要。虽然平面芳烃可以通过催化不对称去芳构化反应转化为对映体富集产物,但大多数方法仅限于杂芳烃和活化芳烃。目前可用的过渡金属催化和/或光氧化还原方法使用非活化芳烃的情况很少。本文重点介绍了最近的研究进展,这些研究旨在开发第一种有机催化不对称去芳构化策略,从非活化芳烃中获得复杂的立体化学产物,利用生成的手性乙烯基-醌甲叉(VQM)的独特反应性。使用这种方法,非活化的苯可以区域选择性地转化为具有优异立体选择性的手性螺环产物和手性氧杂海利烯。机理研究表明,形成了一种手性 VQM,破坏了苯的芳香性,发生了杂 Diels-Alder 反应。