| Literature DB >> 34726920 |
Briana A Capistran1, Stephen H Yuwono1, Mehdi Moemeni1, Soham Maity1, Aria Vahdani1, Babak Borhan1, James E Jackson1, Piotr Piecuch1,2, Marcos Dantus1,2, G J Blanchard1.
Abstract
Substituted fluorene structures have demonstrated unusual photochemical properties. Previous reports on the substituted fluorene Schiff base FR0-SB demonstrated super photobase behavior with a ΔpKb of ∼14 upon photoexcitation. In an effort to understand the basis for this unusual behavior, we have examined the electronic structure and relaxation dynamics of the structural precursor of FR0-SB, the aldehyde FR0, in protic and aprotic solvents using time-resolved fluorescence spectroscopy and quantum chemical calculations. The calculations show three excited singlet states in relatively close energetic proximity. The spectroscopic data are consistent with relaxation dynamics from these electronic states that depend on the presence and concentration of solvent hydroxyl functionality. These results underscore the central role of solvent hydrogen bonding to the FR0 aldehyde oxygen in mediating the relaxation dynamics within this molecule.Entities:
Mesh:
Substances:
Year: 2021 PMID: 34726920 PMCID: PMC9254887 DOI: 10.1021/acs.jpcb.1c06474
Source DB: PubMed Journal: J Phys Chem B ISSN: 1520-5207 Impact factor: 3.466