Spatial confinement alters the ultrafast photoisomerization dynamics of azobenzenes

View/ Open
Issue Date
2020-08-24Author
Otolski, Christopher J.
Raj, A. Mohan
Ramamurthy, Vaidhyanathan
Elles, Christopher G.
Publisher
Royal Society of Chemistry
Type
Article
Article Version
Scholarly/refereed, publisher version
Rights
© The Royal Society of Chemistry 2020. This work is licensed under a Creative Commons Attribution-NonCommercial 4.0 International License.
Metadata
Show full item recordAbstract
Ultrafast transient absorption spectroscopy reveals new excited-state dynamics following excitation of trans-azobenzene (t-Az) and several alkyl-substituted t-Az derivatives encapsulated in a water-soluble supramolecular host–guest complex. Encapsulation increases the excited-state lifetimes and alters the yields of the trans → cis photoisomerization reaction compared with solution. Kinetic modeling of the transient spectra for unsubstituted t-Az following nπ* and ππ* excitation reveals steric trapping of excited-state species, as well as an adiabatic excited-state trans → cis isomerization pathway for confined molecules that is not observed in solution. Analysis of the transient spectra following ππ* excitation for a series of 4-alkyl and 4,4′-dialkyl substituted t-Az molecules suggests that additional crowding due to lengthening of the alkyl tails results in deeper trapping of the excited-state species, including distorted trans and cis structures. The variation of the dynamics due to crowding in the confined environment provides new evidence to explain the violation of Kasha's rule for nπ* and ππ* excitation of azobenzenes based on competition between in-plane inversion and out-of-plane rotation channels.
Collections
Citation
Otolski, C. J., Raj, A. M., Ramamurthy, V., & Elles, C. G. (2020). Spatial confinement alters the ultrafast photoisomerization dynamics of azobenzenes. Chemical science, 11(35), 9513–9523. https://doi.org/10.1039/d0sc03955a
Items in KU ScholarWorks are protected by copyright, with all rights reserved, unless otherwise indicated.
We want to hear from you! Please share your stories about how Open Access to this item benefits YOU.