TY - JOUR
T1 - Tuning of redox behavior and fluorescence of cyano-containing oligophenylenevinylenes
AU - Liu, Michelle S.
AU - Jiang, Xuezhong
AU - Jen, Alex K.-Y.
PY - 2000
Y1 - 2000
N2 - A series of cyano-containing distyrylbenzenes which have the electron-withdrawing groups functionalized on the central phenylene ring were synthesized via the Wittig-Horner reaction. Electrochemical study showed that the electron-affinity of these molecules increased with the increasing strength of electron-accepting groups. 1,4-Bis(4′t-Butylstyryl)-2,5-bis(dicyanovinyl)benzene possessed a low LUMO energy level at -4.01 eV, which provided a better match to the work function of Al cathode. Compared to the cyano-terephthalylidene, introducing cyano groups on the aromatic ring instead of on the vinylene linkage provided better stabilization to the radical anions. The emission colors spanning green, yellow, orange, red could be achieved by changing the electron-accepting strength of oligophenylenevinylenes. Energy gap reductions were caused by a stronger decrease of the LUMO energies than the HOMO energies. These results provided new insights for the design of suitable polymers with much improved electron affinities facilitating electron injection from higher work function metal electrodes.
AB - A series of cyano-containing distyrylbenzenes which have the electron-withdrawing groups functionalized on the central phenylene ring were synthesized via the Wittig-Horner reaction. Electrochemical study showed that the electron-affinity of these molecules increased with the increasing strength of electron-accepting groups. 1,4-Bis(4′t-Butylstyryl)-2,5-bis(dicyanovinyl)benzene possessed a low LUMO energy level at -4.01 eV, which provided a better match to the work function of Al cathode. Compared to the cyano-terephthalylidene, introducing cyano groups on the aromatic ring instead of on the vinylene linkage provided better stabilization to the radical anions. The emission colors spanning green, yellow, orange, red could be achieved by changing the electron-accepting strength of oligophenylenevinylenes. Energy gap reductions were caused by a stronger decrease of the LUMO energies than the HOMO energies. These results provided new insights for the design of suitable polymers with much improved electron affinities facilitating electron injection from higher work function metal electrodes.
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UR - https://www.scopus.com/record/pubmetrics.uri?eid=2-s2.0-0034504747&origin=recordpage
U2 - 10.1557/proc-598-bb5.53
DO - 10.1557/proc-598-bb5.53
M3 - RGC 22 - Publication in policy or professional journal
SN - 0272-9172
VL - 598
JO - Materials Research Society Symposium - Proceedings
JF - Materials Research Society Symposium - Proceedings
T2 - Electrical, Optical, and Magnetic Properties of Organic Solid-State Materials V
Y2 - 29 November 2000 through 3 December 2000
ER -