Intra- vs intermolecular photoinduced electron transfer reactions of a macrocyclic donor-acceptor dyad


Autoria(s): Moore, E. G.; Bernhardt, P. V.; Furstenberg, A.; Riley, M. J.; Vauthey, E.
Data(s)

01/01/2005

Resumo

The synthesis, structural characterization, and photophysical behavior of a 14-membered tetraazamacrocycle with pendant 4-dimethylaminobenzyl (DMAB) and 9-anthracenylmethyl groups is reported (L-3, 6-((9-anthracenylmethyl)amino)-trans-6,13-dimethyl-13-((4-dimethylaminobenzyl)amino)-1,4,8,11-tetraaza-cyclotetradecane). In its free base form, this compound displays rapid intramolecular photoinduced electron transfer (PET) quenching of the anthracene emission, with both the secondary amines and the DMAB group capable of acting as electron donors. When complexed with Zn(II), the characteristic fluorescence of the anthracene chromophore is restored as the former of these pathways is deactivated by coordination. Importantly, it is shown that the DMAB group, which remains uncoordinated and PET active, acts only very weakly to quench emission, by comparison to the behavior of a model Zn complex lacking the pendant DMAB group, [ZnL2](2+) (Chart 1). By contrast, Stern-Volmer analysis of intermolecular quenching of [ZnL2](2+) by N,N-dimethylaniline (DMA) has shown that this reaction is diffusion limited. Hence, the pivotal role of the bridge in influencing intramolecular PET is highlighted.

Identificador

http://espace.library.uq.edu.au/view/UQ:76723

Idioma(s)

eng

Publicador

American Chemical Society

Palavras-Chave #Chemistry, physical #Physics, atomic, molecular and chemical #Charge-recombination #Energy transfer #Excited-state #Ion-pairs #Anthracene #Complexes #Cyclam #N,n-dimethylaniline #Carboxylates #Derivatives #C1 #250201 Transition Metal Chemistry #780103 Chemical sciences
Tipo

Journal Article