Enhanced electronic communication through a conjugated bridge in a porphyrin–fullerene donor–acceptor couple

A ZnP–2EDOTV–C60 triad, with enhanced electronic communication between terminus donor and acceptor moieties, was synthesized and studied both experimentally and theoretically. Electrochemical measurements and density functional theory calculations support that the first oxidation takes place on the...

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Detalhes bibliográficos
Autores: Caballero Briceño, Rubén, Calbo, Joaquin, Aragó, Juan, Cruz Manrique, Pilar de la, Ortí, Enrique, Tkachenko, Nikolai V., Langa de la Puente, Fernando
Formato: artículo
Fecha de publicación:2021
País:España
Recursos:Universidad de Castilla-La Mancha
Repositorio:RUIdeRA. Repositorio Institucional de la UCLM
OAI Identifier:oai:ruidera.uclm.es:10578/32478
Acesso em linha:http://hdl.handle.net/10578/32478
Access Level:acceso abierto
Palavra-chave:Enhanced electronic communication
Conjugated bridge
Donor–acceptor couple
Porphyrin–fullerene
Mediciones electroquímicas
Molecular electronics
Magnetism
Descrição
Resumo:A ZnP–2EDOTV–C60 triad, with enhanced electronic communication between terminus donor and acceptor moieties, was synthesized and studied both experimentally and theoretically. Electrochemical measurements and density functional theory calculations support that the first oxidation takes place on the 3,4-ethylenedioxythiophenevinylene (2EDOTV) bridge followed by the oxidation of the ZnP moiety at slightly higher energies. The electronic communication between the terminal electron-donor ZnP and the electron-acceptor C60 units is enhanced by the conjugated EDOTV-based spacer leading to photoinduced electron transfer over the distance >2 nm in the picosecond time domain. The involvement of the spacer in the electron transfer is confirmed by both photophysical measurements and theoretical calculations indicating the formation of intermediate ZnP–2EDOTVδ+–C60δ− charge-transfer states. Overall, the enhanced donor–acceptor electronic communication accelerates the photoinduced charge separation but also affects the charge recombination process.