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首页> 外文期刊>Macromolecules >Benzobisthiazole-based donor-acceptor copolymer semiconductors for photovoltaic cells and highly stable field-effect transistors
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Benzobisthiazole-based donor-acceptor copolymer semiconductors for photovoltaic cells and highly stable field-effect transistors

机译:用于光电池的基于苯并噻唑的施主-受主共聚物半导体和高度稳定的场效应晶体管

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摘要

Six new donor-acceptor copolymers based on benzobisthiazole and various donor moieties (dithienosilole, dithienopyrrole, cyclopentadithiophene, carbazole, benzodithiophene, and bithiophene) were synthesized, characterized, and used in field-effect transistors and solar cells. The series of polybenzobisthiazoles with donor-acceptor architecture have optical band gaps of 1.83-2.18 eV, have identical LUMO energy levels (~-3.3 eV), and have a HOMO energy level that varied from -4.79 eV in PBTDTP to -5.71 eV in PBTHDDT. X-ray diffraction of the polybenzobisthiazole films showed a lamellar crystalline structure with an interlayer d-spacing of 1.56 nm in PBTOT to 1.83 nm in PBTDTP and 2.12 nm in PBTHDDT and a short π-stacking distance (0.353-0.378 nm). The highly crystalline nature of the polybenzobisthiazoles facilitated high field-effect carrier mobility (up to 0.011 cm~2/(V s)), which remained very stable under ambient conditions for 2 years. Bulk heterojunction solar cells made from one of the benzobisthiazole-based copolymers gave a power conversion efficiency of up to 3.0% under 100 mW/cm2 AM1.5 sunlight illumination in air.
机译:合成,表征了六种基于苯并双噻唑和各种供体部分(二噻吩甲硅烷基,二噻吩并吡咯,环戊二噻吩,咔唑,苯并二噻吩和联噻吩)的新型供体-受体共聚物,并将其用于场效应晶体管和太阳能电池。具有给体-受体结构的一系列聚苯并双噻唑具有的光学带隙为1.83-2.18 eV,具有相同的LUMO能级(〜-3.3 eV),并且HOMO能级从PBTDTP中的-4.79 eV到PBTDTP中的-5.71 eV不等。 PBTHDDT。聚苯并双噻唑薄膜的X射线衍射显示出层状晶体结构,层间d间距在PBTOT中为1.56 nm,在PBTDTP中为1.83 nm,在PBTHDDT中为2.12 nm,并且π堆积距离很短(0.353-0.378 nm)。聚苯并双噻唑的高度结晶性促进了高场效应载流子迁移率(高达0.011 cm〜2 /(V s)),并且在环境条件下保持非常稳定的2年。由一种基于苯并双噻唑的共聚物制成的块状异质结太阳能电池在空气中100 mW / cm2 AM1.5日光照射下的功率转换效率高达3.0%。

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