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Merck
모든 사진(1)

주요 문서

649813

Sigma-Aldrich

PEDOT

tetramethacrylate end-capped solution, 0.5 wt. % (dispersion in propylene carbonate), contains p-toluenesulfonate as dopant

동의어(들):

Oligotron PC, PEDOT, PEDOT, tetramethacrylate end-capped

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About This Item

EC Number:
MDL number:
UNSPSC 코드:
12352103
NACRES:
NA.23

product name

Poly(3,4-ethylenedioxythiophene), tetramethacrylate end-capped solution, 0.5 wt. % (dispersion in propylene carbonate), contains p-toluenesulfonate as dopant

분자량

~1,360-1,600 g/mol (methacrylate equivalent weight)
average Mn ~6,000(lit.)

Quality Level

포함

p-toluenesulfonate as dopant

구성

Oligotron tetramethacrylate, 0.5 wt. %
propylene carbonate, 99.5 wt. %

농도

0.5 wt. % (dispersion in propylene carbonate)

저항성

1-10 M Ω/sq (typical surface resistance of film)

전도도

0.1-0.5 S/cm (bulk)

density

1.189 g/mL at 25 °C

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일반 설명

Please follow this link for Aedotron/Oligotron selection guide table.
Poly(3,4-ethylenedioxythiophene), tetramethacrylate end-capped solution (PEDOT-Meth) is a semiconductor based polymer that is functionalized with tetramethacrylate that facilitates effective crosslinking of the conjugated films.
The main characteristic of Oligotron PC is that it behaves as a reactive oligomer in non-volatile solvent. Used blended with monomers, or for reactions with functional compounds.

애플리케이션

For best results, agitate for 20 minutes prior to use. Films cast from propylene carbonate will require heat to dry. Photocurable inks can be formulated by adding acrylate monomers and photoinitiators (i.e. DMPA). Propylene carbonate will remain in the polymer. Functional compounds can be coupled to the oligomer via reactions at the methacrylate group.
PEDOT-Meth can be used as a plasticizing membrane in the fabrication of ion-selective sensors and light emitting diodes.
Product can be blended with additional acrylate or methacrylate monomers and crosslinked to make polymer blends. Custom molecules can be synthesized by bonding functional compounds, via the methacrylate groups, to the conducting EDOT oligomers.

특징 및 장점

End-capped structure renders the conducting oligomer PEDOT dispersible. The methacrylate groups offer the potential for crosslinking, or addtional chemical functionalization. Completely dried Oligotron(TM) tetramethacrylate via the methacrylate functional groups.

주의사항

Store this product at room temperature (do not refrigerate or freeze). Some settling will normally occur. Agitate, sonicate, and filter prior to use. A plug of glass wool in a pipette can be used for easy filtration. The shelf life of this product will vary depending on how it is stored and handled. Product should be discarded if heavy aggregation occurs, or if sonication / filtering are inadequate to produce a good casting solution.

법적 정보

Oligotron is a trademark of TDA Research, Inc.

픽토그램

Exclamation mark

신호어

Warning

유해 및 위험 성명서

예방조치 성명서

Hazard Classifications

Eye Irrit. 2

Storage Class Code

10 - Combustible liquids

WGK

WGK 2

Flash Point (°F)

269.6 °F - closed cup

Flash Point (°C)

132 °C - closed cup


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문서 라이브러리 방문

Composite Polyacrylate- Poly (3, 4-ethylenedioxythiophene) Membranes for Improved All-Solid-State Ion-Selective Sensors
Rzewuska A, et al.
Analytical Chemistry, 80(1), 321-327 (2008)
Synthesis of water-free PEDOT with polyvinylpyrrolidone stabilizer in organic dispersant system
He J, et al.
Organic Electronics, 53, 117-126 (2018)
Cristina Ocaña et al.
Talanta, 186, 279-285 (2018-05-23)
We report here the fabrication of solid-contact calcium-selective electrodes (Ca2+-SCISEs) made of a polyurethane acrylate ion-selective membrane (ISM) that was covalently attached to the underlying ion-to-electron transducer (solid-contact). Methacrylate-functionalized poly(3,4-ethylenedioxythiophene) (Meth-PEDOT) and Meth-PEDOT films containing either multiwalled carbon nanotubes (MWCNT)

문서

Progress in Organic Thermoelectric Materials & Devices including high ZT values of >0.2 at room temperature by p-type (PEDOT:PSS) & n-type (Poly[Kx(Ni-ett)]) materials are discussed.

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

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