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Sigma-Aldrich

Polyaniline (emeraldine salt)

average Mw >15,000, powder (Infusible), 3-100 μm particle size

Synonym(s):

PANI

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About This Item

MDL number:
UNSPSC Code:
12352103
NACRES:
NA.23

form

powder (Infusible)

Quality Level

mol wt

average Mw >15,000

surface area

5-20 m2/g

particle size

3-100 μm

conductivity

2-4 S/cm (compacted powder)

mp

>300 °C (lit.)

density

1.36 g/mL at 25 °C

bulk density

18.8 lb/cu.ft

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General description

Form of polyaniline complexed (doped) with proprietary organic sulfonic acid. Polyaniline is environmentally stable and with tunable conductivity.3 Synthesis of polyaniline (PANI) emeraldine salt by chemical oxidation has been reported. It was observed that sulfonated dyes chemically interact with the charged backbone of PANI. PANI selectively adsorbs the sulfonated dye. Spectral, diffraction and conductivity measurements of the polymer has been reported in the same study. 1
Inherently conductive polymer.
Stable at 100 °C and at 200 °C for short periods. Dispersed particles tend to reaggregrate in molded articles forming conductive pathways. Acidic salt of an organic acid, incompatible with most bases.
Form of polyaniline complexed (doped) with proprietary organic sulfonic acid

Application

A variety of nanomaterials like silver nanoparticles (AgNPs), graphene oxide(GO), aluminum oxide(α-Al2O3), carbon fiber and graphite can be potentially used in conjunction with PANI for the development of translational medicine, supercapacitors, triboelectric nanogenerators, and other energy storage applications.
Additive in polymer blends and liquid dispersions for electromagnetic shielding, charge dissipation, electrodes, batteries and sensors. Polyaniline may be used for linear actuator applications. 1

Packaging

5 g packaged in glass bottles; 25 g packaged in poly bottles

Storage Class Code

11 - Combustible Solids

WGK

WGK 3

Flash Point(F)

Not applicable

Flash Point(C)

Not applicable


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Electric impulse spring-assisted contact separation mode triboelectric nanogenerator fabricated from polyaniline emeraldine salt and woven carbon fibers.
Cheedarala RK, et al.
Nano Energy, 53(43), 362-372 (2018)
Tuning electrical transport mechanism of polyaniline-graphene oxide quantum dots nanocomposites for potential electronic device applications.
Mombru? D, et al.
The Journal of Physical Chemistry C, 120(43), 25117-25123 (2016)
AC Conduction in Polyaniline Emeraldine Salt-Graphite Pellets.
Frontiers of Composite Materials II, 923, 66-71 (2018)
Analysis of Superfine-Resolution Printing of Polyaniline and Silver Microstructures for Electronic Applications.
Yadav VKS, et al.
IEEE Transactions on Components and Packaging Technologies, 8(9), 1678-1685 (2018)
Andrés Felipe Cruz-Pacheco et al.
Polymers, 12(5) (2020-05-23)
Polyaniline (PANI) has recently gained great attention due to its outstanding electrical properties and ease of processability; these characteristics make it ideal for the manufacturing of polymer blends. In this study, the processing and piezoresistive characterization of polymer composites resulting

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