Department of Chemistry, Wake Forest University, Winston-Salem, North Carolina 27109, USA.
J Org Chem. 2010 Jun 4;75(11):3806-13. doi: 10.1021/jo100650u.
The photochemistry of a series of 9,10-anthraquinones with multiple benzyloxy substituents was investigated. In polar solvent, the expected Blankespoor oxidative cleavage reaction is the major reaction pathway, but in most cases, several minor products were observed. In nonpolar solvents, the abundance of these minor products increases dramatically. Four types of product were observed with the favored reaction pathway shifting with minor changes in substitution on the anthraquinone. Several types of product require cleavage of the C-O bond on the benzyloxy group and, apparently, follow a photo-Claisen-type mechanism. Others involve the expected 1,5-diradical but do not exhibit the single-electron transfer usually observed in the Blankespoor-type reaction. The results indicate the importance of considering the medium and photoredox behavior in anthraquinone photochemistry.
研究了一系列具有多个苄氧基取代基的 9,10-蒽醌的光化学。在极性溶剂中,预期的 Blankespoor 氧化裂解反应是主要的反应途径,但在大多数情况下,观察到几种少量产物。在非极性溶剂中,这些少量产物的丰度显著增加。观察到四种类型的产物,随着蒽醌上取代基的微小变化,有利的反应途径发生变化。几种类型的产物需要裂解苄氧基上的 C-O 键,显然遵循光-Claisen 型机制。其他产物涉及预期的 1,5-双自由基,但不表现出通常在 Blankespoor 型反应中观察到的单电子转移。结果表明,在蒽醌光化学中考虑介质和光氧化还原行为的重要性。