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Merck

445711

Sigma-Aldrich

Poly(3-octylthiophene-2,5-diyl)

regioregular

Synonim(y):

P3OT

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About This Item

Wzór liniowy:
(C12H18S)n
Numer CAS:
Numer MDL:
Kod UNSPSC:
12352103
NACRES:
NA.23

masa cząsteczkowa

average Mn ~34,000

kolor

black

przewodność

1 × 10-6 S/cm
~1 × 103 S/cm (when doped with iodine)

mp

190 °C
198-211 °C

fluorescencja

λex 442 nm; λem 562 nm in chloroform

Wydajność urządzenia OPV

ITO/PEDOT:PSS/P3OT:PC61BM (1:2)/LiF/Al

  • Short-circuit current density (Jsc): 5.55 mA/cm2
  • Open-circuit voltage (Voc): 0.5 V
  • Fill Factor (FF): 0.33
  • Power Conversion Efficiency (PCE): 0.91 %

właściwości półprzewodników

P-type (mobility=1E-4-1E-1)

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Opis ogólny

Greater than 98.5% head-to-tail regiospecific conformation.
Poly(3-octylthiophene-2,5-diyl) (P3OT) is an alkylthiophene based conductive polymer with high electroluminescence, which is soluble in most of the organic solvents. It can be prepared by the electrochemical polymerization of 3-octylthiophene (3OT). It is hydrophobic and can be used as a transducer for ion selective electrodes.

Zastosowanie

For the characterization and solid-state properties of this polymer, see J. Am. Chem. Soc. .
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.
Rechargeable battery electrodes, electrochromic devices, chemical and optical sensors, light-emitting diodes, microelectrical amplifiers, field-effect transistors and non-linear optical materials.
Rechargeable battery electrodes, electrochromic devices, chemical and optical sensors, light-emitting diodes, microelectrical amplifiers, field-effect transistors and non-linear optical materials. Poly (3-octylthiophene-2,5-diyl) (P3OT)-single walled carbon nanotubes composites were prepared., 3 Doped P3OT may be used in NO2 sensing applications. 2
Conducting polymer.
Rechargeable battery electrodes, electrochromic devices, chemical and optical sensors, light-emitting diodes, microelectrical amplifiers, field-effect transistors and non-linear optical materials.
Used in organic field-effect transistors and in polymer-based solar cells.

Cechy i korzyści

Good processability, environmental stability and electroactivity.

Opakowanie

Packaged in glass bottles

Informacje prawne

Product of Rieke Metals, Inc.
Rieke is a registered trademark of Rieke Metals, Inc.
This page may contain text that has been machine translated.

Kod klasy składowania

11 - Combustible Solids

Klasa zagrożenia wodnego (WGK)

WGK 3

Temperatura zapłonu (°F)

Not applicable

Temperatura zapłonu (°C)

Not applicable

Środki ochrony indywidualnej

Eyeshields, Gloves, type N95 (US)


Certyfikaty analizy (CoA)

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Masz już ten produkt?

Dokumenty związane z niedawno zakupionymi produktami zostały zamieszczone w Bibliotece dokumentów.

Odwiedź Bibliotekę dokumentów

Physical characterizations of semi-conducting conjugated polymer-CNTs nanocomposites.
Abu-Abdeen M, et al.
Journal of Polymer Research, 19(3), 1-9 (2012)
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)
Physical characterizations of semi-conducting conjugated polymer-CNTs nanocomposites
Abu-Abdeen M, et al.
Journal of Polymer Research, 19(3), 9839-9839 (2012)
Structural analysis of poly (3-alkylthiophene) s
Leclerc M, et al.
Die Makromolekulare Chemie, 190(12), 3105-3116 (1989)
Single-wall carbon nanotube/conjugated polymer photovoltaic devices
Kymakis E and Amaratunga G
Applied Physics Letters, 80(1), 112-114 (2002)

Produkty

Polymer-based Materials for Printed Electronics: Enabling High Efficiency Solar Power and Lighting

The application of conducting polymers at the interface with biology is an exciting new trend in organic electronics research.

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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