Photoactive Polythiophene:Titania Hybrids with Excellent Miscibility for Use in Polymer Photovoltaic Cells
Journal
Macromolecular Rapid Communications
Journal Volume
29
Journal Issue
15
Pages
1303-1308
Date Issued
2008
Author(s)
Abstract
A series of poly{(3-hexylthiophene)-co-[3-(6-hydroxyhexyl)thiophene]}: titania (P3HT-OH:TiO2) hybrids were synthesized via the in situ polycondensation of titanium (IV) n-butoxide in the presence of P3HT-OH. Introducing a hydroxyl moiety onto the side-chain of poly(3-hexylthiophene) (P3HT) significantly promotes the polymer-titania interaction, resulting in the formation of homogeneous hybrid colloids. The UV-vis spectra of P3HT-OH:TiO 2 films demonstrate that TiO2 markedly affects the stacking structure and the chain conformation of P3HT-OH. The maximum absorption wavelength of these hybrid materials can be tailor-made by merely varying the weight percentage of TiO2. Moreover, P3HT-OH:TiO2 can be further utilized as an efficient compatibilizer in preparing photoactive P3HT:P3HT-OH:TiO2 films with excellent miscibility. The photovoltaic cell based on such a hybrid exhibited a 2.4-fold higher value of power-conversion efficiency compared to the cell based on P3HT:TiO2. © 2008 WILEY-VCH Verlag GmbH & Co. KGaA.
Subjects
Conjugate polymers; Hybrid materials; Polymer solar cells; Polythiophene
SDGs
Other Subjects
ABS resins; Carrier mobility; Cells; Colloids; Conversion efficiency; Cytology; Photoelectric cells; Photoelectrochemical cells; Photovoltaic cells; Polycondensation; Polymers; Solar energy; Sulfur compounds; Thiophene; Titanium; Titanium dioxide; Titanium oxides; Cell-based; Chain conformations; Conjugate polymers; Hybrid colloids; Hydroxyl moieties; In situ polycondensation; Maximum absorption wavelengths; Polymer photovoltaic cells; Polymer solar cells; Polythiophene; Stacking structures; Titania; Weight percentages; Hybrid materials
Type
journal article