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Poly(thiophene-3-[2-(2-methoxyethoxy)ethoxy]-2,5-diyl), sulfonated solution

699799 -

2% in 1,2-propanediol/isopropanol/water, 3:2:1, electronic grade

DOWNLOAD MSDS (PDF)

Synonym: Plexcore® OC RG-1100, Sulfonated polythiophene ink

  • CAS Number: 1003582-37-3

  • Linear Formula: (C9H12O6S2)X(C9H11O3S)Y

Properties

Related CategoriesConducting Materials (Buffer Layer), Donor Materials, Donor-Acceptor Materials, Hole Injection Layer (HIL) Materials, Hole Transport (HT) & Hole Injection Layer (HIL) Materials,
gradeelectronic grade
formliquid
concentration2% in 1,2-propanediol/isopropanol/water, 3:2:1
resistivity 25-250 Ω-cm
work function −5.1-−5.2 eV
color dark blue
pH2.2-2.8
surface tension 35-38 dynes/cm
viscosity7-13 cP , Brookfield
density~0.98 g/mL at 25 °C

Description

Application

Organic conductive ink suitable for spin coating applications and as hole injection layer in organic light emitting diodes (OLED).

Packaging

25 mL in glass btl

Legal Information

Product of Plextronics, Inc. U.S. Patent number 6,166,172.

Plexcore is a registered trademark of Plextronics, Inc.

Protocols & Applications

Polmer-based Materials for Printed Electronics: Enabling High Efficency Solar Power and Lighting

Price and Availability

Customers Also Purchased

2% in ethylene glycol monobutyl ether/water, 3:2, electronic grade


Documents

Certificate of Analysis

699799 - Bulletin (203KB)
Structure Search
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Safety Information

SymbolGHS02GHS07  GHS02, GHS07
Signal wordWarning
Hazard statementsH226-H319-H336
Precautionary statementsP261-P305 + P351 + P338
Hazard CodesXi
Risk Statements10-36-67
Safety Statements7-16-24/25-26
RIDADRUN 1993 3/PG 3
WGK Germany2
Flash Point(F)89.6 °F
Flash Point(C)32 °C
Technical information & documentation associated with this product is available in the Safety & Documentation tab.

Articles

Inkjet Printing as a Key Enabling Technology for Printed Electronics

In the past decade, the family of digital printing technologies has evolved from being just a tool to visualize information into a generator of functionalities. The phrase ′printing beyond color′ apt...
Ashok Sridhar1, Thomas Blaudeck, Reinhard R. Baumann1,2*
Material Matters Volume 6 Article 1
Keywords: Absorption, Adhesion, Degradations, Deposition, Electronics, Industries, Microwave synthesis, Nanotechnology, Organic electronics, PAGE, Printed electronics, Reproduction, Solar cells, Solvents, Spin coating, transformation

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

The soaring global demand for energy has created an urgent need for new energy sources that are both cost-competitive and eco-friendly. Renewable energy technology, such as solar power and energy eff...
Ritesh Tipnis*, Darin Laird, Mathew Mathai
Material Matters 2008, 3.4, 92.
Keywords: Absorption, Degradations, Deposition, Electronics, Environmental, Infrared spectroscopy, Organic electronics, PAGE, Photovoltaics, Polymerization reactions, Printed electronics, Recombination, Reductions, Renewable energy, Semiconductor, Separation, Solar cells, Spin coating

Protocols

Properties and Application of Poly(thiophene-3-[2-(2-methoxyethoxy)ethoxy]-2,5-diyl), sulfonated solutions

Poly(thiophene-3-[2-(2-methoxyethoxy)ethoxy]-2,5-diyl), sulfonated solutions are organic conductive inks designed for spin coating applications. However, they have also been evaluated and may be used...
Keywords: Catalog, Deposition, Detection methods, Reductions, Semiconductor, Solvents, Spin coating


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