Togasaki Kei, Arai Tatsuo, Nishimura Yoshinobu
Graduate School of Pure and Applied Sciences, University of Tsukuba, Tsukuba, Japan.
Photochem Photobiol Sci. 2021 Apr;20(4):523-532. doi: 10.1007/s43630-021-00035-9. Epub 2021 Mar 27.
To investigate substitution effects on excited-state intermolecular proton transfer (ESPT) reactions as well as acidity of proton donating fragments in the ground state, we synthesized substituted anthracen-2-yl-3-phenylurea derivatives that form a hydrogen bonds with acetate anions and undergo ESPT reaction. Fluorescence lifetime measurements and their kinetic analyses revealed that the trifluoromethyl group on the phenyl ring as an electron-withdrawing group caused a slow ESPT reaction despite an increase in the acidity of the N-H fragment in the ground state. In contrast, the methoxy group as a donating group leads to a fast ESPT reaction despite a reduction of the acidity of the N-H fragment in the ground state. These effects of substituents on ESPT reaction are due to their influence on the charge transfer reaction, which occurs from the N-H fragment to the anthryl ring to increase the acidity of N-H followed by ESPT reaction, over the urea unit by a combination of resonance and inductive effects. These opposing effects of substituents on the acidity of the urea unit in the ground and excited states provide an important insight in balancing the reactivity of proton transfer reaction in both the excited and ground states.
为了研究取代基对激发态分子间质子转移(ESPT)反应的影响以及基态下质子供体片段的酸度,我们合成了与醋酸根阴离子形成氢键并发生ESPT反应的取代蒽-2-基-3-苯基脲衍生物。荧光寿命测量及其动力学分析表明,苯环上的三氟甲基作为吸电子基团,尽管基态下N-H片段的酸度增加,但导致ESPT反应缓慢。相反,甲氧基作为供电子基团,尽管基态下N-H片段的酸度降低,但导致ESPT反应快速。取代基对ESPT反应的这些影响是由于它们对电荷转移反应的影响,电荷转移反应从N-H片段发生到蒽环,通过共振和诱导效应的组合,增加N-H的酸度,随后发生ESPT反应,通过尿素单元。取代基对基态和激发态下尿素单元酸度的这些相反影响为平衡激发态和基态下质子转移反应的反应性提供了重要的见解。