OPV device performance
ITO/PEDOT:PSS/P3OT:PC61BM (1:2)/LiF/Al
mol wt
average Mn 22,000, average Mw 36,600
color
red
mp
198-211 °C
solubility
chloroform, methylene chloride, toluene, and THF: soluble
fluorescence
λex 419 nm; λem 550 nm in chloroform
General description
区域异构体的 1:1 (头对头):(头对尾) 连接键。
Poly(3-octylthiophene-2,5-diyl) (P3OT) is an alkylthiophene based conductive polymer with high electroluminescence. It is soluble in most of the organic solvents and can be prepared by the electrochemical polymerization of 3-octylthiophene (3OT). It has hydrophobic properties and can be used as a transducer for ion selective electrodes.
Application
导电聚合物。
充电电池电极、电致变色器件、化学和光学传感器、发光二极管、微电放大器、场效应晶体管和非线性光学材料。
充电电池电极、电致变色器件、化学和光学传感器、发光二极管、微电放大器、场效应晶体管和非线性光学材料。
用于有机场效应晶体管 和聚合物型太阳能电池。
P3OT forms a nanocomposite with carbon nanotubes (CNTs) for devising a high performance semiconducting material. It can also be used as a π-conjugating polymer for the fabrication of organic electronic based devices which include polymeric diodes, solar cells and photovoltaic modules.
Features and Benefits
良好的加工性能、环境稳定性和电活性。
Packaging
Packaged in glass bottles
Legal Information
Rieke® Metals, Inc. 的产品。®Rieke Metals, Inc. 的注册商标
存储类别
11 - Combustible Solids
wgk
WGK 3
flash_point_f
Not applicable
flash_point_c
Not applicable
ppe
Eyeshields, Gloves, type N95 (US)
Semiconducting polymer diodes: Large size, low cost photodetectors with excellent visible-ultraviolet sensitivity
Yu, G and Pakbaz, K and Heeger, AJ
Applied Physics Letters, 64(25), 3422-3424 (1994)
Poly (3-octylthiophene) as solid contact for ion-selective electrodes: contradictions and possibilities
Jarvis JM, et al.
Journal of Solid State Electrochemistry, 20(11), 3033-3041 (2016)
Light-Emitting Polymers
Pei Q, et al.
Material Matters, 2(3), 26-26 (2007)
Single-wall carbon nanotube/conjugated polymer photovoltaic devices
Kymakis E and Amaratunga G
Applied Physics Letters, 80(1), 112-114 (2002)
Fabrication of a poly (3-octylthiophene-2, 5-diyl) electrochemiluminescence device assisted by perylene
Daimon T and Nihei E
Materials, 6(5), 1704-1717 (2013)
商品
Intrinsically stretchable active layers for organic field-effect transistors (OFET) are discussed. Polymer structural modification & post-polymerization modifications are 2 methods to achieve this.
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