Gil Michał, Waluk Jacek
Institute of Physical Chemistry, Polish Academy of Sciences, Kasprzaka 44/52, 01-224 Warsaw, Poland.
J Am Chem Soc. 2007 Feb 7;129(5):1335-41. doi: 10.1021/ja066976e.
A procedure that enables determining the reaction rate from the analysis of fluorescence anisotropy is described and applied to the investigation of double hydrogen transfer between inner-cavity nitrogen atoms in electronically excited porphycene. Tautomerization proceeds as a thermally activated synchronous double hydrogen tunneling. The barrier to the reaction is dynamically modulated by a vibration that simultaneously changes the strength of two intramolecular hydrogen bonds. Different mechanisms of tautomerization in porphycene and its parent isomer, porphyrin, can be understood by analyzing the potentials for hydrogen transfer.
描述了一种通过荧光各向异性分析来确定反应速率的方法,并将其应用于研究电子激发的二萘嵌苯内腔氮原子之间的双氢转移。互变异构以热激活的同步双氢隧穿方式进行。反应的势垒由一种振动动态调节,该振动同时改变两个分子内氢键的强度。通过分析氢转移的势能,可以理解二萘嵌苯及其母体异构体卟啉中不同的互变异构机制。