Journal article

Isomerization Dynamics of Electronically Coupled but Thermodynamically Decoupled Bisazobenzenes


Authors listBoumrifak, C; Yang, C; Bellotto, S; Wegner, HA; Wachtveitl, J; Dreuw, A; Slavov, C

Publication year2019

Pages411-417

JournalChemPhotoChem

Volume number3

Issue number6

ISSN2367-0932

DOI Linkhttps://doi.org/10.1002/cptc.201900077

PublisherWiley


Abstract
Photoresponsive structures composed of multiple photoswitchable units offer the possibility of more diverse and complex control applications. For example, o-bisazobenzenes (o-bisABs) show unusual electronic coupling affecting the properties of the individual AB units. In the present work derivatives with amino and acetamido groups were investigated to gain further insight into the photoisomerization pathways of o-bisABs. Time-resolved spectroscopic experiments supported by quantum chemical calculations revealed that electronic coupling removes the bias introduced by selective excitation of one AB moiety. In effect, the isomerization ratio between the two photochromic units in o-bisABs is intrinsically determined by the interplay of electronic coupling and their relative energy. Furthermore, the Z -> E thermally activated relaxation of the AB moieties in o-bisABs is decoupled and proceeds independently for each unit on different timescales.



Citation Styles

Harvard Citation styleBoumrifak, C., Yang, C., Bellotto, S., Wegner, H., Wachtveitl, J., Dreuw, A., et al. (2019) Isomerization Dynamics of Electronically Coupled but Thermodynamically Decoupled Bisazobenzenes, ChemPhotoChem, 3(6), pp. 411-417. https://doi.org/10.1002/cptc.201900077

APA Citation styleBoumrifak, C., Yang, C., Bellotto, S., Wegner, H., Wachtveitl, J., Dreuw, A., & Slavov, C. (2019). Isomerization Dynamics of Electronically Coupled but Thermodynamically Decoupled Bisazobenzenes. ChemPhotoChem. 3(6), 411-417. https://doi.org/10.1002/cptc.201900077


Last updated on 2025-21-05 at 16:47