Journal of Materials Chemistry C · 2014 · 40 citations · 44 references
EngineeringOrganic ElectronicsOrganic Solar CellResponsive PolymersOrganic ChemistryChemistryPhotovoltaicsPolymersPolystyrene Sulfonate/ptbftdtbtChemical EngineeringElectronic DevicesSolar Cell StructuresIndium Tin OxideHybrid MaterialsPolymer ChemistryMaterials ScienceOrganic SemiconductorOrganic Charge-transfer CompoundElectronic MaterialsNew AlkylthienylPolymer ScienceConjugated PolymerSolar CellsFunctional MaterialsSolar Cell Materials
A new alkylthienyl substituted thieno[2,3-f]benzofuran (TBF)-based polymer (PTBFTDTBT) was synthesized and characterized. PTBFTDTBT had a high molecular weight, good solubility in common organic solvents, broad visible absorption from 300 to 750 nm, and a relatively deep highest occupied molecular orbital level (−5.2 eV). PTBFTDTBT also showed a field hole mobility up to the order of 10−2 using an organic field effect transistor (OFET) method and an order of 10−2 using a space-charge-limited current (SCLC) method. With the structure of indium tin oxide (ITO)/poly(3,4-ethylenedioxythiophene):polystyrene sulfonate/PTBFTDTBT:PC71BM (1 : 2, w/w)/Ca/Al, a power conversion efficiency of 6.42% was obtained with a high short circuit current (Jsc) of 13.51 mA cm−2 and fill factor (FF) of 61%, under the illumination of AM1.5G, at 100 mW cm−2, without any post-treatment. The study demonstrates that TBF is a promising building block for organic electronics.
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A polymer tandem solar cell with 10.6% power conversion efficiency
Jingbi You, Letian Dou, Ken Yoshimura et al. · Nature Communications · 2013 · 2.8K citations · Full text