Highly surfaced polypyrrole nano-networks and nano-fibers

Polypyrrole (PPy) nano-networks and nano-fibers were synthesized using interfacial and template polymerization techniques, respectively. The morphology of the PPy nano-networks showed that a homogeneous, three-dimensionally grown nano-fibers were produced. Dodecyl sulfonate was used as surfactant in...

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Published in:Journal of materials science Vol. 41; no. 14; pp. 4678 - 4683
Main Authors: ACIK, Muge, BARISTIRAN, Canan, SONMEZ, Gursel
Format: Journal Article
Language:English
Published: Heidelberg Springer 01-07-2006
Springer Nature B.V
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Abstract Polypyrrole (PPy) nano-networks and nano-fibers were synthesized using interfacial and template polymerization techniques, respectively. The morphology of the PPy nano-networks showed that a homogeneous, three-dimensionally grown nano-fibers were produced. Dodecyl sulfonate was used as surfactant in the interfacial polymerization. Bulk conductivity of PPy nano-networks were in a range of 10−1–10−4 S/cm with a surface area of ca. 480 m2/g. Template synthesis produced one-directional alignment of conducting nano-arrays for the purpose of possible applications of these materials in charge storage devices (i.e., supercapacitors) as electrode materials. Electrochemical and spectroelectrochemical investigations showed that these materials are promising for device applications.
AbstractList Polypyrrole (PPy) nano-networks and nano-fibers were synthesized using interfacial and template polymerization techniques, respectively. The morphology of the PPy nano-networks showed that a homogeneous, three-dimensionally grown nano-fibers were produced. Dodecyl sulfonate was used as surfactant in the interfacial polymerization. Bulk conductivity of PPy nano-networks were in a range of 10−1–10−4 S/cm with a surface area of ca. 480 m2/g. Template synthesis produced one-directional alignment of conducting nano-arrays for the purpose of possible applications of these materials in charge storage devices (i.e., supercapacitors) as electrode materials. Electrochemical and spectroelectrochemical investigations showed that these materials are promising for device applications.
Polypyrrole (PPy) nano-networks and nano-fibers were synthesized using interfacial and template polymerization techniques, respectively. The morphology of the PPy nano-networks showed that a homogeneous, three-dimensionally grown nano-fibers were produced. Dodecyl sulfonate was used as surfactant in the interfacial polymerization. Bulk conductivity of PPy nano-networks were in a range of 10 super(-1)-10 super(-4 )S/cm with a surface area of ca. 480 m super(2)/g. Template synthesis produced one-directional alignment of conducting nano-arrays for the purpose of possible applications of these materials in charge storage devices (i.e., supercapacitors) as electrode materials. Electrochemical and spectroelectrochemical investigations showed that these materials are promising for device applications.
Polypyrrole (PPy) nano-networks and nano-fibers were synthesized using interfacial and template polymerization techniques, respectively. The morphology of the PPy nano-networks showed that a homogeneous, three-dimensionally grown nano-fibers were produced. Dodecyl sulfonate was used as surfactant in the interfacial polymerization. Bulk conductivity of PPy nano-networks were in a range of 10-1-10-4 S/cm with a surface area of ca. 480 m2/g. Template synthesis produced one-directional alignment of conducting nano-arrays for the purpose of possible applications of these materials in charge storage devices (i.e., supercapacitors) as electrode materials. Electrochemical and spectroelectrochemical investigations showed that these materials are promising for device applications.
Author BARISTIRAN, Canan
ACIK, Muge
SONMEZ, Gursel
Author_xml – sequence: 1
  givenname: Muge
  surname: ACIK
  fullname: ACIK, Muge
  organization: Faculty of Engineering & Natural Sciences, Chemistry Program, Sabanci University, Orhanli, Tuzla, Istanbul 34956, Turkey
– sequence: 2
  givenname: Canan
  surname: BARISTIRAN
  fullname: BARISTIRAN, Canan
  organization: Faculty of Engineering & Natural Sciences, Chemistry Program, Sabanci University, Orhanli, Tuzla, Istanbul 34956, Turkey
– sequence: 3
  givenname: Gursel
  surname: SONMEZ
  fullname: SONMEZ, Gursel
  organization: Faculty of Engineering & Natural Sciences, Chemistry Program, Sabanci University, Orhanli, Tuzla, Istanbul 34956, Turkey
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Issue 14
Keywords Electrical conductivity
Electrical properties
Synthetic fiber
Nanostructure
Experimental study
Electrochemical polymerization
Property processing relationship
Lauryl sulfate
Conducting polymers
Structure processing relationship
Anionic surfactant
Morphology
Preparation
Interfacial polymerization
Oxidative polymerization
Pyrrole polymer
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Snippet Polypyrrole (PPy) nano-networks and nano-fibers were synthesized using interfacial and template polymerization techniques, respectively. The morphology of the...
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SubjectTerms Applied sciences
Bulk polymerization
Charge materials
Devices
Electrode materials
Exact sciences and technology
Materials science
Morphology
Nanocomposites
Nanofibers
Nanomaterials
Nanostructure
Networks
Organic polymers
Physicochemistry of polymers
Polymerization
Polymers with particular properties
Polypyrroles
Preparation, kinetics, thermodynamics, mechanism and catalysts
Sulfonates
Title Highly surfaced polypyrrole nano-networks and nano-fibers
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https://search.proquest.com/docview/1082187036
https://search.proquest.com/docview/29144128
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