Grup de Materials Orgànics, Institut de Nanociència i Nanotecnologia, Departament de Química Orgànica, Facultat de Química, Universitat de Barcelona, Martí i Franquès 1-11, E-08028, Barcelona, Spain.
Phys Chem Chem Phys. 2010 Oct 28;12(40):13238-42. doi: 10.1039/c004340k. Epub 2010 Sep 6.
The thermal cis-to-trans isomerisation process has been studied for a series of para-, ortho- and polyhydroxy-substituted azobenzenes in different solvents. The kinetics of the thermal back reaction for the p-hydroxy-substituted azobenzenes depend strongly on the nature of the solvent used, with relaxation times ranging from 200-300 milliseconds in ethanol to half an hour in toluene. Otherwise, the process rate is mainly independent of the solvent nature for the ortho substituted analogues. Polyhydroxy-substituted azobenzenes show very much faster kinetics than the para- and ortho- monohydroxyazoderivatives. With relaxation times of 6-12 milliseconds in ethanol, they are optimal molecules for designing fast optical switching devices. All the hydroxyazoderivatives thermally isomerise from the metastable cis form to the thermodynamically stable trans isomer through a rotational mechanism.
已在一系列对位、邻位和多羟基取代的偶氮苯在不同溶剂中研究了热顺反异构化过程。p-羟基取代的偶氮苯的热反反应动力学强烈依赖于所用溶剂的性质,在乙醇中弛豫时间范围从 200-300 毫秒到甲苯中半小时。否则,对于邻位取代类似物,该过程速率主要与溶剂性质无关。多羟基取代的偶氮苯比对位和邻位单羟基偶氮衍生物表现出更快的动力学。在乙醇中,弛豫时间为 6-12 毫秒,它们是设计快速光开关器件的理想分子。所有羟基偶氮衍生物都通过旋转机制从亚稳态顺式形式热异构化为热力学稳定的反式异构体。