Sundararajan Chitra, Falvey Daniel E
Department of Chemistry and Biochemistry, University of Maryland, College Park, MD 20742-2021, USA.
Photochem Photobiol Sci. 2006 Jan;5(1):116-21. doi: 10.1039/b511269a. Epub 2005 Nov 16.
One electron reduction of N-alkyl-4-picolinium (NAP) esters initiates C-O bond scission releasing a carboxylate anion. Previous experiments have demonstrated that this process can be initiated by photoinduced electron transfer from an electron-donating sensitizer. In the present study it is demonstrated that a comparable photorelease process can be initiated by photolysis of an electron acceptor (mediator), which in turn abstracts an electron from a ground state electron donor. The resulting mediator anion radicals donate an electron to the NAP ester, triggering release of the carboxylate anion. It is demonstrated that when benzophenone is used as a mediator, higher quantum yields for ester decomposition can be achieved compared with sensitizers that do direct photoinduced electron transfer.
N-烷基-4-吡啶鎓(NAP)酯的单电子还原引发C-O键断裂,释放出羧酸根阴离子。先前的实验表明,该过程可由供电子敏化剂的光诱导电子转移引发。在本研究中,证明了通过电子受体(介质)的光解可以引发类似的光释放过程,该电子受体进而从基态电子供体中提取一个电子。产生的介质阴离子自由基将一个电子给予NAP酯,触发羧酸根阴离子的释放。结果表明,当使用二苯甲酮作为介质时,与直接进行光诱导电子转移的敏化剂相比,酯分解的量子产率更高。