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CAS 126213-50-1 EDOT PEDOT 126213-50-1 3,4-ethylenedioxythiophene 99.9% Purity

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CAS 126213-50-1 EDOT PEDOT 126213-50-1 3,4-ethylenedioxythiophene 99.9% Purity

Brand Name : Bacavi
Payment Terms : negotiation
Place of Origin : China
Certification : ISO 9001:2008
Model Number : EDT.99E.Y
MOQ : unlimited
Price : negotiation
Packaging Details : plastic drum/carton drum/bag/
Delivery Time : 3-10 working days
Supply Ability : 35t Per Month
Chemical Name Chemical Name : 3,4-Ethylenedioxythiophene
Classification : Phenolic compounds
Cas No. : 126213-50-1
EC No. : 603-128-0
Reach PR# : 05-2118156116-47-0000
Purity : ≥99.90%
Grade : Electronic grade
Molar mass(g/mol) : 142.18
Synonyms : EDT;EDOT;AKOSBBS-00006360;3,4-Ethylenedioxythi;3,4-Ethylendioxythiophen;4-Ethylenedioxythiophene;3,4-ETHYLENEDIOXYTHIOPHE;3,4-ETHYLENEDIOXYTHIOPHENE;3,4-ETHYLENEDIOXOTHIOPHENE;3,4-ethylen3dioxythiophene
Application : 1. in solid electrolytic capacitor, 2. in Antistatic coating 3. the super material of capacitor elect 3. OEL display technology 4. as the fine characteristics of PEDT 5. Other
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CAS 126213-50-1 EDOT PEDOT 3,4-ethylenedioxythiophene 99.9% Purity


3,4-ethylenedioxythiophene, also known as 3,4-ethylenedioxy thiophene, referred to as EDOT, colorless to pale yellow liquid, melting point of 10.5 ℃. Slightly soluble in water, 20 ℃ under the conditions of water solubility of 2.1g / L, a slight unpleasant odor.


EDOT/3,4-Ethylenedioxythiophene Specification


BeiLi is a leading manufacturer of 3,4-ethylenedioxythiophene(EDOT) 126213-50-1 which has the patented technology for producing high quality EDOT.


BeiLi Brand CAS 126213-50-1 99.9% 3,4-Ethylenedioxythiophene EDOT is using technology patents developed by the company with reliable quality assurance.Our patented technology makes it easy to obtain the target-3,4-Ethylenedioxythiophene EDOT with a short route, high product yield, mild reaction conditions, recyclable materials such as raw materials and solvents, which greatly reduces production costs, reducing the emission of waste, less pollution, with good prospects for industrial applications.


P/N#EDT.99E.YGradeElectronic grade
Purity≥99.90%Melting range10.5ºC
Water≤0.1%Quality standardmeets company specification

EDOT/3,4-Ethylenedioxythiophene Description


Monomers, such as hydroxymethyl-3,4-ethylenedioxythiophene (HM-EDOT), can be electropolymerized into a conducting polymer that is capable of a high rate of electron transfer, and can increase the flow of current on the electrode surface. HM-EDOT is a suitable monomer for this project because it has a hydroxyl functional group, which allows for increased solubility in aqueous environments. The monomer HM-EDOT can be functionalized and synthesized into carboxylic acid-3,4-ethylenedioxythiophene (COOH-EDOT).


3,4-ethylenedioxythiophene(EDOT) application


Thiophene, also known as thiofuran, is a cyclic compound containing four carbon atoms and one sulphur atom in a ring. It is a toxic, flammable, highly reactive, colorless liquid insoluble in water (soluble in alcohol and ether) and melts at 38 C, boils at 84 C. It is used as a solvent and chemical intermediate. Its derivatives are widely used in manufacturing dyes, aroma compounds and pharmaceuticals. They are used as monomers to make condensation copolymers.


Due to extended pi-electron cloud overlaps, organometallic molecules or aromatic oligometers such as anthracene exhibit semiconductor properties. Conductive polymers have extended delocalized bonds that creates electrical conductivity when charge carriers generated make positive charges (holes) and negative charges (electrons) move to opposite electrodes. Doping is the intentional impurities in a pure semiconductor to generate charge carriers. The transportation of charges is responsible for fluorescence and electrical energy. These can form well-ordered thin crystalline films. Organic semiconductors have some merits of self radiation, flexibility, light weight, easy fabrication, and low cost. Organic electroluminescence materials have lead to the rapid development of photovoltaic and display devices such as organic solar cells, biosensitizers, OLED(Organic Light Emiting Diode), OTFT(Organic Thin Film Transistor), Wearable Display, and e-Paper. Some examples of organic electroluminescence materials are:

  • Oligomer Electro Luminescence Materials
    • 8-hydroxyquinoline aluminum
    • Anthracene
    • Pentacene
    • Penyl substituent cyclopentadiene derivatives
    • Phthaloperinone derivatives
    • Perylene derivatives
    • Rubrene
  • Polymer Electro Luminescence Materials
    • Polyanilines
    • Poly(p-phenylenevinylene)s
    • Poly(thiophene)s
    • Poly(alkylfluorene)s
    • Poly(acetylene)s

3,4-Ethylenedioxythiophene is a monomer for the manufacture of conjugated polymer [ poly(3,4-ethylenedioxythiophene)] for the applications of redox activity, electroactivity, and conductivity.


Exposure Controls, Personal Protection


Engineering Controls: Use only in a chemical fume hood. Safety shower and eye bath.

Personal Protective Equipment

Eyes: Wear chemical goggles. Wear safety glasses and chemical goggles if splashing is possible.

Skin: Wear appropriate protective gloves and clothing to prevent skin exposure.

Clothing: Wear appropriate protective clothing to minimize contact with skin.

Respirators: A respiratory protection program that meets OSHA's 29 CFR 1910.134 and ANSI Z88.2 requirements or European Standard EN 149 must be followed whenever workplace conditions warrant a respirator's use. Wear a NIOSH/MSHA or European Standard EN 149 approved full-facepiece airline respirator in the positive pressure mode with emergency escape provisions.


BeiLi CAS 126213-50-1 99.9% 3,4-Ethylenedioxythiophene EDOT is using technology patents developed by the company with reliable quality assurance.Our patented technology makes it easy to obtain the target-3,4-Ethylenedioxythiophene EDOT with a short route, high product yield, mild reaction conditions, recyclable materials such as raw materials and solvents, which greatly reduces production costs, reducing the emission of waste, less pollution, with good prospects for industrial applications.



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CAS 126213-50-1 EDOT PEDOT 126213-50-1 3,4-ethylenedioxythiophene 99.9% Purity Images

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