추천 제품
분자량
average Mw ~10,000
solubility
m-cresol: soluble
DMAC: soluble
DMF: soluble
DMSO: soluble
NMP: soluble
InChI
1S/C3H4BrN3.ClH/c1-2-3(4)6-7-5-2;/h1H3,(H,5,6,7);1H
InChI key
LYCWKZFKTMHXQA-UHFFFAOYSA-N
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관련 카테고리
일반 설명
Polyaniline (PAni) emeraldine salt can be prepared by protonation of PAni emeraldine base (PAni-EB). PAni-EB forms at pH>7. It′s mechanism against corrosive agents has been explained in a study.
Polyaniline (emeraldine base) (PANI) is an intrinsic conductive polymer which consists of a ring structure attached with nitrogen substituted derivatives. It has an emeraldine type of oxidation state that exists in the form of its base. It exhibits high corrosion resistance and can be used in the development of electrochemical devices.
애플리케이션
Polyaniline (PANI) forms a conjugating system that can be used for a variety of semiconducting applications. It is also widely used as protective coatings and hole transporting layers (HTLs) for organic electronics and chemical sensing.
The polymer acts as an anticorrosive additive. Epoxy paints may be modified using PAni-EB.
특징 및 장점
Undoped form of conducting polymer (non-conductive).
Storage Class Code
11 - Combustible Solids
WGK
WGK 3
Flash Point (°F)
Not applicable
Flash Point (°C)
Not applicable
개인 보호 장비
Eyeshields, Gloves, type N95 (US)
시험 성적서(COA)
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이미 열람한 고객
Study of epoxy and alkyd coatings modified with emeraldine base form of polyaniline.
Progress in Organic Coatings, 58(4), 316-322 (2007)
Suitability of emeraldine base polyaniline-PVA composite film for carbon dioxide sensing.
Synthetic Metals, 156(21-24), 1401-1407 (2006)
Anticorrosion performances of epoxy coatings modified with polyaniline: A comparison between the emeraldine base and salt forms
Progress in Organic Coatings, 65(1), 88-93 (2009)
Corrosion protection of iron/steel by emeraldine base polyaniline: an X-ray photoelectron spectroscopy study.
Synthetic Metals, 85(1-3), 1323-1326 (1997)
Emeraldine Base Polyaniline as an Alternative to Poly(3,4-ethylenedioxythiophene) as a Hole-Transporting Layer
Advances in Functional Materials, 11(6), 407-402 (2001)
문서
Self-healing soft electronic materials offer potential cost savings and reduced electronic waste.
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