Thum Matthew D, Falvey Daniel E
University of Maryland , College Park , Maryland 20742 , United States.
J Phys Chem A. 2018 Mar 29;122(12):3204-3210. doi: 10.1021/acs.jpca.8b00657. Epub 2018 Mar 16.
A photoreleasable protecting group activated by sequential absorption of two visible photons is designed, synthesized, and tested. Specifically, an anthraquinone-based chromophore is covalently attached to an N-alkylpicolinium ester. Photolysis of this linked system results in the clean release of a corresponding carboxylic acid. Through product analysis, laser flash photolysis, and steady-state UV-vis spectroscopy, it is demonstrated that carboxylate ion release is affected by sequential absorption of two photons. The initial photochemical step results in reduction of an anthraquinone chromophore to the corresponding hydroquinone. The latter either reacts with O to regenerate the starting material, or absorption of a second photon causes an electron transfer to the picolinium group triggering C-O bond scission and release of the carboxylate.
设计、合成并测试了一种通过顺序吸收两个可见光子而激活的光可释放保护基团。具体而言,一种基于蒽醌的发色团与N-烷基吡啶鎓酯共价连接。该连接体系的光解导致相应羧酸的干净释放。通过产物分析、激光闪光光解和稳态紫外-可见光谱,证明羧酸根离子的释放受两个光子的顺序吸收影响。初始光化学步骤导致蒽醌发色团还原为相应的对苯二酚。后者要么与O反应再生起始原料,要么吸收第二个光子导致电子转移至吡啶鎓基团,触发C-O键断裂并释放羧酸根。