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Poly(3,4-ethylenedioxythiophene)-poly(styrenesulfonate) - 0.8% in H₂O, conductive inkjet ink, high purity

  • 0.8% in H₂O, conductive inkjet ink
Item Number
P466057
Grouped product items
SKUSizeAvailabilityPrice Qty
P466057-25g
25g
Available within 8-12 weeks(?)
Production requires sourcing of materials. We appreciate your patience and understanding.
$379.90

Basic Description

Specifications & Purity0.8% in H₂O, conductive inkjet ink
Legal InformationAgfa-Gevaert N.V. 产品Orgacon is a trademark of Agfa-Gevaert N.V.
Storage TempStore at 2-8°C
Shipped InWet ice
Product Description

Poly(3,4-ethylenedioxythiophene)-poly(styrenesulfonate) (PEDOT:PSS) is an organic semiconductor wherein conjugated PEDOT is doped with sulfonated PSS, which acts as a counter ion. PEDOT is responsible for the conduction mechanism and the hydrated colloidal solution formed by PSS.PEDOT:PSS has high electrical conductivity and good oxidation resistance, the properties which make it suitable for electromagnetic shielding and noise suppression. Thus, the polymeric film formed possesses high transparency throughout the visible light spectrum and even in near IR and near UV regions, displaying virtually 100% absorption from 900-2,000 nm. No absorption maximum from 400-800 nm was observed.PEDOT:PSS acts as an intrinsically conductive polymer, which can be coated on a variety of substrates and nanoparticles like fullerenes (C60) for the low-cost printing of electronics and optoelectronics based applications. Conductive hydrogels can be prepared by using PEDOT:PSS with polyethylene glycol-diacrylate, which can be potentially used in tissue engineering.Virtually 100% absorption from 900-2,000 nm. No absorption maximum from 400-800 nm. Conductive polymer blend.

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References

1. Mou Pal,Umapada Pal,Justo Miguel Gracia Y Jiménez,Felipe Pérez-Rodríguez.  (2012-01-05)  Effects of crystallization and dopant concentration on the emission behavior of TiO2:Eu nanophosphors..  Nanoscale research letters,  ((1)): (1-1).  [PMID:22214494]
2. Adrien Pierre,Mahsa Sadeghi,Marcia M Payne,Antonio Facchetti,John E Anthony,Ana Claudia Arias.  (2014-06-20)  All-printed flexible organic transistors enabled by surface tension-guided blade coating..  Advanced materials (Deerfield Beach, Fla.),  26  ((32)): (5722-5727).  [PMID:24941920]

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