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Polypyrrole - doped, conductivity 30S/cm (bulk), extent of labeling: 20wt. % loading, composite with carbon black, high purity , CAS No.30604-81-0

  • doped, conductivity 30S/cm (bulk), extent of labeling: 20wt. % loading, composite with carbon black
Item Number
P476184
Grouped product items
SKUSizeAvailabilityPrice Qty
P476184-250mg
250mg
In stock
$21.90
P476184-500mg
500mg
Available within 8-12 weeks(?)
Production requires sourcing of materials. We appreciate your patience and understanding.
$29.90
P476184-1g
1g
Available within 8-12 weeks(?)
Production requires sourcing of materials. We appreciate your patience and understanding.
$39.90
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Basic Description

SynonymsPYRROLE|1H-Pyrrole|109-97-7|Divinylenimine|Azole|Imidole|Pyrrol|Monopyrrole|Divinyleneimine|1-Aza-2,4-cyclopentadiene|FEMA No. 3386|30604-81-0|NSC 62777|CCRIS 2933|HSDB 119|CHEBI:19203|EINECS 203-724-7|UNII-86S1ZD6L2C|NSC-62777|Pyrrole-15N|(1H-Pyrrole)x|P
Specifications & Puritydoped, conductivity 30S/cm (bulk), extent of labeling: 20wt. % loading, composite with carbon black
Product Description

Polypyrrole (PPy) is a conductive and highly stable polymer. It may be prepared by a standard electrochemical technique. PPy may also be prepared by reacting β-napthalene sulfonic acid (NSA) and ammonium peroxo-disulphate in aqueous medium. The charges on the surfaces can be easily modified by doping the polymer during its synthesis.Solubility and conductivity measurements of PPy doped with camphor sulfonic and dodecyl benzene sulfonic acid has been reported. Electrosensitivity and lower oxidation potential of PPy make it potentially useful for drug delivery, chemical sensors, batteries, ion selective electrodes, biosensor and biochemistry research. 5Polypyrrole (PPy) is a widely used heterocyclic polymer that is highly conductive and is majorly used in electrochemical applications. It is a cost efficient conducting polymer that has a stable oxidation and high solubility in water. It has a high degree of flexibility than polyaniline and has a density that facilitates a higher capacitance per unit volume.PPy is mainly used in the fabrication of a variety of electrochemical devices which include supercapacitors, chemical sensors, dye sensitized solar cells and lithium-ion batteries.Inherently conducting polymer based additive. Loading of polypyrrole in carbon black typically 20%. Stable up to at least 300°C in air.Conducting polymer.Conductive additive for thermoplasitics and thermosets.

Associated Targets

TBXAS1 Tchem Thromboxane-A synthase 0 Activities

Activity TypeActivity Value -log(M)Mechanism of ActionActivity ReferencePublications (PubMed IDs)

Names and Identifiers

IUPAC Name 1H-pyrrole
INCHI InChI=1S/C4H5N/c1-2-4-5-3-1/h1-5H
InChi Key KAESVJOAVNADME-UHFFFAOYSA-N
Canonical SMILES C1=CNC=C1
Isomeric SMILES C1=CNC=C1
RTECS 8027
PubChem CID 8027

Certificates

Certificate of Analysis(COA)

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6 results found

Lot NumberCertificate TypeDateItem
C2428163Certificate of AnalysisMar 23, 2024 P476184
C2428164Certificate of AnalysisMar 23, 2024 P476184
C2428165Certificate of AnalysisMar 23, 2024 P476184
L2315527Certificate of AnalysisApr 24, 2023 P476184
L2315528Certificate of AnalysisApr 24, 2023 P476184
L2315529Certificate of AnalysisApr 24, 2023 P476184

Chemical and Physical Properties

Solubility H2O: insoluble; organic solvents: insoluble
Melt Point(°C)>300 °C

Safety and Hazards(GHS)

RTECS 8027

Related Documents

References

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18. Isabella S Romero,Morgan L Schurr,Jack V Lally,Mitchell Z Kotlik,Amanda R Murphy.  (2013-01-17)  Enhancing the interface in silk-polypyrrole composites through chemical modification of silk fibroin..  ACS applied materials & interfaces,  ((3)): (553-564).  [PMID:23320759]
19. Youe Zhou,Qian Xia,Mengjie Ding,Hubert Kageruka,Haiying Jiang,Yan Jiang,Huifen Jing,Xiao Xiao,Hongying Zhong.  (2013-01-19)  Magnetic nanoparticles of nitrogen enriched carbon (mnNEC) for analysis of pesticides and metabolites in zebrafish by gas chromatography-mass spectrometry..  Journal of chromatography. B, Analytical technologies in the biomedical and life sciences,  915-916  (46-51).  [PMID:23328251]
20. Yu Lei,Xueren Qian,Jing Shen,Xianhui An.  (2013-01-24)  A process of applying polypyrrole-engineered pulp fibers prepared using hydrogen peroxide as oxidant to detoxification of Cr(VI)-contaminated water..  Bioresource technology,  131  (134-138).  [PMID:23340110]
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22. Jun Zhang,Xianghong Liu,Lixue Zhang,Bingqiang Cao,Shihua Wu.  (2013-01-24)  Reactive template synthesis of polypyrrole nanotubes for fabricating metal/conducting polymer nanocomposites..  Macromolecular rapid communications,  34  ((6)): (528-532).  [PMID:23341240]
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24. N Catherine Hogan,Giovanni Talei-Franzesi,Omar Abudayyeh,Andrew Taberner,Ian Hunter.  (2013-02-01)  Low-cost, flexible polymer arrays for long-term neuronal culture..  Conference proceedings : ... Annual International Conference of the IEEE Engineering in Medicine and Biology Society. IEEE Engineering in Medicine and Biology Society. Annual Conference,  2012  (803-806).  [PMID:23366014]
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35. Jingwen Zeng,Zhongbing Huang,Guangfu Yin,Jiabang Qin,Xianchun Chen,Jianwen Gu.  (2013-06-14)  Fabrication of conductive NGF-conjugated polypyrrole-poly(l-lactic acid) fibers and their effect on neurite outgrowth..  Colloids and surfaces. B, Biointerfaces,  110  (450-457).  [PMID:23759386]
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39. Antonio Guerrieri,Rosanna Ciriello,Tommaso R I Cataldi.  (2013-09-04)  A novel amperometric biosensor based on a co-crosslinked L-lysine-α-oxidase/overoxidized polypyrrole bilayer for the highly selective determination of L-lysine..  Analytica chimica acta,  795  (52-59).  [PMID:23998537]
40. Tae-Sun Jun,Thi Anh Ho,Muhammad Rashid,Yong Shin Kim.  (2013-11-12)  A novel methanol sensor based on gas-penetration through a porous polypyrrole-coated polyacrylonitrile nanofiber mat..  Journal of nanoscience and nanotechnology,  13  ((9)): (6249-6253).  [PMID:24205639]
41. Mopsy Dhiman,Robin Joshi,Ashu Gulati,Pawan Kapur,Abhijit Ganguli,Madan Lal Singla.  (2013-11-20)  Interpretation of Indian orthodox tea using multi-sensing impedometric technique..  Journal of nanoscience and nanotechnology,  13  ((10)): (6767-6772).  [PMID:24245141]
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43. Christian N Kotanen,A Nolan Wilson,Chenbo Dong,Cerasela-Zoica Dinu,Gusphyl A Justin,Anthony Guiseppi-Elie.  (2013-06-13)  The effect of the physicochemical properties of bioactive electroconductive hydrogels on the growth and proliferation of attachment dependent cells..  Biomaterials,  34  ((27)): (6318-6327).  [PMID:23755835]

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