Bassolino Giovanni, Nançoz Christoph, Thiel Zacharias, Bois Estelle, Vauthey Eric, Rivera-Fuentes Pablo
Laboratorium für Organische Chemie , ETH Zürich , HCI G329, Vladimir-Prelog-Weg 3 , 8093 Zürich , Switzerland . Email:
Department of Physical Chemistry , University of Geneva , 30 Quai Ernest-Ansermet , 1211 Geneva 4 , Switzerland . Email:
Chem Sci. 2017 Oct 31;9(2):387-391. doi: 10.1039/c7sc03627b. eCollection 2018 Jan 14.
Azetidinyl substituents have been recently used to improve the fluorescence quantum yield of several classes of fluorophores. Herein, we demonstrate that other useful photochemical processes can be modulated using this strategy. In particular, we prepared and measured the quantum yield of photorelease of a series of 7-azetidinyl-4-methyl coumarin esters and compared it to their 7-diethylamino and julolidine-fused analogues. The efficiency of the photorelease reactions of the azetidinyl-substituted compounds was 2- to 5-fold higher than the corresponding diethylamino coumarins. We investigated the origin of this effect in model fluorophores and in the photoactivatable esters, and found that H-bonding with the solvent seems to be the prominent deactivation channel inhibited upon substitution with an azetidinyl ring. We anticipate that this substitution strategy could be used to modulate other photochemical processes with applications in chemical biology, catalysis and materials science.
氮杂环丁烷基取代基最近已被用于提高几类荧光团的荧光量子产率。在此,我们证明可以使用该策略调节其他有用的光化学过程。特别是,我们制备并测量了一系列7-氮杂环丁烷基-4-甲基香豆素酯的光释放量子产率,并将其与其7-二乙氨基和呫吨环稠合类似物进行比较。氮杂环丁烷基取代化合物的光释放反应效率比相应的二乙氨基香豆素高2至5倍。我们在模型荧光团和光活化酯中研究了这种效应的起源,发现与溶剂的氢键似乎是被氮杂环丁烷基环取代后被抑制的主要失活通道。我们预计这种取代策略可用于调节其他光化学过程,应用于化学生物学、催化和材料科学。