TY - JOUR
T1 - Soluble dithienothiophene polymers
T2 - Effect of link pattern
AU - Zhang, Shiming
AU - Fan, Haijun
AU - Liu, Yao
AU - Zhao, Guangjin
AU - Li, Qikai
AU - Li, Yongfang
AU - Zhan, Xiaowei
PY - 2009/6/1
Y1 - 2009/6/1
N2 - Soluble conjugated polymers based on 3,5-didecanyldithieno[3,2-5:2′, 3′-d] thiophene-single-bond (1), double-bond (2), and triple-bond linked (3)-were synthesized by palladium(0)-catalyzed Stille coupling reaction and oxidation polymerization. The thermal, absorption, emission, and electrochemical properties of these polymers were examined; the effect of the link pattern was studied. All polymers exhibit decomposition temperatures over 295 °C and glass-transition temperatures in the range of 137-202 °C. The absorption spectra of 1, 2, and 3 in thin films exhibit absorption maxima at 381, 584, and 444 nm, respectively. Polymer 1 exhibits intense green emission located at 510 nm in film, whereas polymers 2 and 3 are nonemissive both in solution and in film due to H-aggregate. Cyclic voltammograms of polymers 1, 2, and 3 display irreversible oxidation waves with onset oxidation potentials at 1.73, 0.78, and 1.03 V versus Ag+/Ag, respectively. Theory calculation on model compounds suggests that the dihedral angle decreases in the order of 1 > 3 > 2.On reducing the dihedral angle, the polymer exhibits a longer absorption maximum, a smaller bandgap, a less oxidizing potential and fluorescence quench, due to more co- planar and more π-electron delocalized backbone structure. Polymer solar cells were fabricated based on the blend of polymer 2 and methanofullerene [6,6]-phenyl C61- butyric acid methyl ester (PCBM). The power conversion efficiency of 0.45% was achieved under AM 1.5, 100 mW cm-2 using polymer 2:PCBM (1:2, w/w) as active layer.
AB - Soluble conjugated polymers based on 3,5-didecanyldithieno[3,2-5:2′, 3′-d] thiophene-single-bond (1), double-bond (2), and triple-bond linked (3)-were synthesized by palladium(0)-catalyzed Stille coupling reaction and oxidation polymerization. The thermal, absorption, emission, and electrochemical properties of these polymers were examined; the effect of the link pattern was studied. All polymers exhibit decomposition temperatures over 295 °C and glass-transition temperatures in the range of 137-202 °C. The absorption spectra of 1, 2, and 3 in thin films exhibit absorption maxima at 381, 584, and 444 nm, respectively. Polymer 1 exhibits intense green emission located at 510 nm in film, whereas polymers 2 and 3 are nonemissive both in solution and in film due to H-aggregate. Cyclic voltammograms of polymers 1, 2, and 3 display irreversible oxidation waves with onset oxidation potentials at 1.73, 0.78, and 1.03 V versus Ag+/Ag, respectively. Theory calculation on model compounds suggests that the dihedral angle decreases in the order of 1 > 3 > 2.On reducing the dihedral angle, the polymer exhibits a longer absorption maximum, a smaller bandgap, a less oxidizing potential and fluorescence quench, due to more co- planar and more π-electron delocalized backbone structure. Polymer solar cells were fabricated based on the blend of polymer 2 and methanofullerene [6,6]-phenyl C61- butyric acid methyl ester (PCBM). The power conversion efficiency of 0.45% was achieved under AM 1.5, 100 mW cm-2 using polymer 2:PCBM (1:2, w/w) as active layer.
KW - Conjugated polymers
KW - Dithienothiophene
KW - Photovoltaic cells
KW - Structure- property relations
KW - Synthesis
UR - http://www.scopus.com/inward/record.url?scp=66449135371&partnerID=8YFLogxK
U2 - 10.1002/pola.23381
DO - 10.1002/pola.23381
M3 - 文章
AN - SCOPUS:66449135371
SN - 0887-624X
VL - 47
SP - 2843
EP - 2852
JO - Journal of Polymer Science, Part A: Polymer Chemistry
JF - Journal of Polymer Science, Part A: Polymer Chemistry
IS - 11
ER -