Cordes Thorben, Herzog Teja T, Malkmus Stephan, Draxler Simone, Brust Thomas, Digirolamo Jessica A, Lees Watson J, Braun Markus
Ludwig-Maximilians-Universität München, Oettigenstr. 67, D-80538, München, Germany.
Photochem Photobiol Sci. 2009 Apr;8(4):528-34. doi: 10.1039/b817627b. Epub 2009 Feb 11.
A wavelength and solvent dependent study of a photochromic indolylfulgide is presented. The ring-closure reaction is characterized using stationary and time-resolved spectroscopy with femtosecond time resolution. After excitation into the first excited singlet state (S(1)) the photoprocesses proceed on ultrafast timescales (0.3-0.45 ps) in both polar and non-polar solvents. Excitation into higher electronic states results in similar reaction kinetics as found for S(1) excitation. A simple kinetic scheme can be established for the photoprocesses under all different experimental conditions: as expected from organic textbooks neither the solvent surroundings nor the excitation wavelength strongly alter the reaction scheme. The experimental study demonstrates that the ring-closure reaction of photochromic indolylfulgides can be considered as a very robust photoprocess: this fact may lead to a great variety of different applications where the reaction dynamics of the molecular switch are not disturbed by any surrounding effects.
本文介绍了一种光致变色吲哚基俘精酸酐的波长和溶剂依赖性研究。通过具有飞秒时间分辨率的稳态和时间分辨光谱对闭环反应进行了表征。在激发到第一激发单重态(S(1))后,光过程在极性和非极性溶剂中均以超快时间尺度(0.3 - 0.45皮秒)进行。激发到更高电子态会导致与S(1)激发时相似的反应动力学。在所有不同实验条件下,可以为光过程建立一个简单的动力学方案:正如有机化学教科书所预期的那样,溶剂环境和激发波长都不会强烈改变反应方案。实验研究表明,光致变色吲哚基俘精酸酐的闭环反应可被视为一种非常稳健的光过程:这一事实可能导致各种各样不同的应用,其中分子开关的反应动力学不会受到任何周围环境效应的干扰。