| Literature DB >> 28853181 |
J Cristóbal López1, Mayca Del Rio1, Ainhoa Oliden2, Jorge Bañuelos2, Iñigo López-Arbeloa2, Inmaculada García-Moreno3, Ana M Gómez1.
Abstract
Herein we describe the synthesis, and computationally aided photophysical characterization of a new set of urea-bridged bis-BODIPY derivatives. These new dyads are efficiently obtained by a one-pot tandem Staudinger/aza-Wittig ureation protocol, from easily accessible meso-phenyl ortho-azidomethyl BODIPYs. These symmetric bis-BODIPYs outstand by a high absorption probability and excellent fluorescence and laser emission in less polar media. Nevertheless, this emission ability decreases in more polar media, which is ascribed to a light-induced charge-transfer from the urea spacer to the dipyrrin core, a process that can be modulated by appropriate changes in the substitution pattern of the BODIPY core. Furthermore, this ureation protocol can also be employed for the direct conjugation of our BODIPY-azides to amine-containing compounds, thus providing access to fluorescent non-symmetric ureas.Entities:
Keywords: Staudinger reaction; aza-Wittig; charge transfer; fluorescence; ureation
Year: 2017 PMID: 28853181 DOI: 10.1002/chem.201703383
Source DB: PubMed Journal: Chemistry ISSN: 0947-6539 Impact factor: 5.236