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Synthesis and characterization of four novel 1,3-azole based push-pull heterocyclic systems

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Detalhes bibliográficos
Resumo:Four novel 1-(4-thiophene-2-yl)phenyl)-1H-pyrrole derivatives functionalized with different 1,3-azole moieties fused with a phenyl ring have been synthesized, in fair yields, and their optical properties studied. The results showed that the optical properties could be readily tuned by changing the electronic nature of the azole ring, or even with the introduction of a nitro group. The benzothiazole, benzimidazole and benzoxazole heterocycles are heteroaromatic electron deficient moieties that act as both acceptor groups and -conjugated spacers with auxiliary electron withdrawing ability.1 Moreover, benzimidazole derivatives offers the possibility of substitution on the nitrogen atom for further tuning of their optical and electronic properties. Benz[X]azole derivatives are interesting compounds with several optical applications,2 and as biologically active compounds.3
Autores principais:Raposo, M. Manuela M.
Outros Autores:Fernandes, Sara Sofia Marques
Assunto:Synthesis Benzothiazole benzimidazole Benzoxazole Thiophene Pyrrole Push-pull heterocyclcic systems UV-vis spectroscopy Fluorescence Ciências Naturais::Ciências Químicas
Ano:2017
País:Portugal
Tipo de documento:outro
Tipo de acesso:acesso aberto
Instituição associada:Universidade do Minho
Idioma:inglês
Origem:RepositóriUM - Universidade do Minho
Descrição
Resumo:Four novel 1-(4-thiophene-2-yl)phenyl)-1H-pyrrole derivatives functionalized with different 1,3-azole moieties fused with a phenyl ring have been synthesized, in fair yields, and their optical properties studied. The results showed that the optical properties could be readily tuned by changing the electronic nature of the azole ring, or even with the introduction of a nitro group. The benzothiazole, benzimidazole and benzoxazole heterocycles are heteroaromatic electron deficient moieties that act as both acceptor groups and -conjugated spacers with auxiliary electron withdrawing ability.1 Moreover, benzimidazole derivatives offers the possibility of substitution on the nitrogen atom for further tuning of their optical and electronic properties. Benz[X]azole derivatives are interesting compounds with several optical applications,2 and as biologically active compounds.3