TY - JOUR
T1 - Alternating pyrene-fluorene linear copolymers
T2 - Influence of non-conjugated and conjugated pyrene on thermal and optoelectronic properties
AU - Tang, Chao
AU - Xu, Hui
AU - Liu, Feng
AU - Liu, Xu Dong
AU - Lai, Wen Yong
AU - Wang, Xu Liang
AU - Huang, Wei
PY - 2013
Y1 - 2013
N2 - In order to explore the influence of non-conjugated and conjugated pyrene on the properties of polymers, four alternating pyrene-fluorene linear copolymers, PDOF-PPF, PDAOPF-PPF, PDOF-P and PDAOPF-P (Scheme 1), were designed, synthesized and characterized. They show greatly higher thermal stability than their oligomers due to curving of polymer chain. They also show high T g due to high internal rotation barrier originated from large pyrene group. For non-conjugated pyrene substituted PDOF-PPF and PDAOPF-PPF, absorption spectra show sharp peak at about 354 nm, which should be attributed to intramolecular interaction of pyrene and main conjugation. And in contrast, conjugated pyrene substituted PDOF-P and PDAOPF-P show structureless spectra. They also show stable spectra even annealed due to the high internal rotation barrier originated from pyrene. The spectra data are consistent with electrochemical and calculated data. It proves that conjugated pyrene plays much less contribution to frontier orbitals than non-conjugated pyrene. At last, the polymers were used as emitter to fabricated PLEDs, and the devices showed low onset voltage of about 4 V, with maximum brightness of 1050 and 1520 cd/m 2 for PDOF-PPF and PDAOPF-PPF as emitters.
AB - In order to explore the influence of non-conjugated and conjugated pyrene on the properties of polymers, four alternating pyrene-fluorene linear copolymers, PDOF-PPF, PDAOPF-PPF, PDOF-P and PDAOPF-P (Scheme 1), were designed, synthesized and characterized. They show greatly higher thermal stability than their oligomers due to curving of polymer chain. They also show high T g due to high internal rotation barrier originated from large pyrene group. For non-conjugated pyrene substituted PDOF-PPF and PDAOPF-PPF, absorption spectra show sharp peak at about 354 nm, which should be attributed to intramolecular interaction of pyrene and main conjugation. And in contrast, conjugated pyrene substituted PDOF-P and PDAOPF-P show structureless spectra. They also show stable spectra even annealed due to the high internal rotation barrier originated from pyrene. The spectra data are consistent with electrochemical and calculated data. It proves that conjugated pyrene plays much less contribution to frontier orbitals than non-conjugated pyrene. At last, the polymers were used as emitter to fabricated PLEDs, and the devices showed low onset voltage of about 4 V, with maximum brightness of 1050 and 1520 cd/m 2 for PDOF-PPF and PDAOPF-PPF as emitters.
KW - Alternating pyrene-fluorene linear copolymer
KW - Influence of pyrene
KW - Optoelectronic properties
KW - Polymer semiconductor
KW - Thermal properties
UR - http://www.scopus.com/inward/record.url?scp=84877853426&partnerID=8YFLogxK
U2 - 10.1016/j.synthmet.2013.04.015
DO - 10.1016/j.synthmet.2013.04.015
M3 - 文章
AN - SCOPUS:84877853426
SN - 0379-6779
VL - 174
SP - 33
EP - 41
JO - Synthetic Metals
JF - Synthetic Metals
ER -