Hsieh Cheng-Chih, Chen Kew-Yu, Hsieh Wan-Ting, Lai Chin-Hung, Shen Jiun-Yi, Jiang Chang-Ming, Duan Hsin-Sheng, Chou Pi-Tai
Department of Chemistry, National Taiwan University, Da-an District, Taipei, Taiwan.
Chemphyschem. 2008 Oct 24;9(15):2221-9. doi: 10.1002/cphc.200800352.
The interplay between excited-state charge and proton transfer reactions in protic solvents is investigated in a series of 7-azaindole (7AI) derivatives: 3-cyano-7-azaindole (3CNAI), 5-cyano-7-azaindole (5CNAI), 3,5-dicyano-7-azaindole (3,5CNAI) and dicyanoethenyl-7-azaindole (DiCNAI). Similar to 7AI, 3CNAI and 3,5CNAI undergo methanol catalyzed excited-state double proton transfer (ESDPT), resulting in dual (normal and proton transfer) emission. Conversely, ESDPT is prohibited for 5CNAI and DiCNAI in methanol, as supported by a unique normal emission with high quantum efficiency. Instead, the normal emission undergoes prominent solvatochromism. Detailed relaxation dynamics and temperature dependent studies are carried out. The results conclude that significant excited-state charge transfer (ESCT) takes place for both 5CNAI and DiCNAI. The charge-transfer specie possesses a different dipole moment from that of the proton-transfer tautomer species. Upon reaching the equilibrium polarization, there exists a solvent-polarity induced barrier during the proton-transfer tautomerization, and ESDPT is prohibited for 5CNAI and DiCNAI during the excited-state lifespan. The result is remarkably different from 7AI, which is also unique among most excited-state charge/proton transfer coupled systems studied to date.
在一系列7-氮杂吲哚(7AI)衍生物中研究了质子溶剂中激发态电荷与质子转移反应之间的相互作用:3-氰基-7-氮杂吲哚(3CNAI)、5-氰基-7-氮杂吲哚(5CNAI)、3,5-二氰基-7-氮杂吲哚(3,5CNAI)和二氰基乙烯基-7-氮杂吲哚(DiCNAI)。与7AI类似,3CNAI和3,5CNAI经历甲醇催化的激发态双质子转移(ESDPT),产生双重(正常和质子转移)发射。相反,甲醇中的5CNAI和DiCNAI禁止ESDPT,这由具有高量子效率的独特正常发射所支持。相反,正常发射表现出显著的溶剂化显色现象。进行了详细的弛豫动力学和温度依赖性研究。结果表明,5CNAI和DiCNAI都发生了显著的激发态电荷转移(ESCT)。电荷转移物种的偶极矩与质子转移互变异构体物种的偶极矩不同。达到平衡极化后,质子转移互变异构化过程中存在溶剂极性诱导的势垒,5CNAI和DiCNAI在激发态寿命期间禁止ESDPT。结果与7AI明显不同,7AI在迄今为止研究的大多数激发态电荷/质子转移耦合系统中也是独特的。