School of Chemistry, The University of Edinburgh, West Mains Road, Edinburgh, UKEH9 3JJ.
Photochem Photobiol Sci. 2010 Jul 30;9(7):968-74. doi: 10.1039/c0pp00056f. Epub 2010 May 24.
In a combined experimental and computational study of a group of para-substituted azobenzenes, the effects of substituents and solvent on the kinetics of thermal cis-to-trans isomerisation have been examined and the success of DFT calculations in predicting kinetic parameters assessed. Mono-substituted species are predicted to isomerise by inversion in both non-polar and polar solvent, whereas for push-pull azobenzenes the mechanism is predicted to change from inversion to rotation on going from non-polar to polar solvent. Computed free energies of activation qualitatively reproduce experimental trends but do not quantitatively predict the kinetics of cis-trans isomerisation. The polarisable continuum model of solvation fails to predict the experimentally observed influence of solvent on the entropy of activation.
在一组对位取代偶氮苯的实验和计算综合研究中,考察了取代基和溶剂对热顺式-反式异构化动力学的影响,并评估了 DFT 计算在预测动力学参数方面的成功。预测单取代物在非极性和极性溶剂中通过反转进行异构化,而对于推-拉偶氮苯,随着溶剂从非极性变为极性,预测的机制将从反转变为旋转。计算得到的活化自由能定性地再现了实验趋势,但不能定量地预测顺反异构化的动力学。溶剂化的极化连续体模型未能预测实验观察到的溶剂对活化熵的影响。