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Influence of MWCNTs on β-Phase PVDF and Triboelectric Properties
by
Song, Youngjun
, Kim, Sejung
, Heller, Michael J.
in
Aluminum
/ Beta phase
/ Crystal structure
/ Dielectric properties
/ Fluorides
/ Fluorine
/ Fourier transforms
/ Microscopy
/ Morphology
/ Multi wall carbon nanotubes
/ Nanocomposites
/ Nanomaterials
/ Nanoparticles
/ Nucleation
/ Performance evaluation
/ Physical chemistry
/ Physics
/ Polymers
/ Polyvinylidene fluorides
/ Studies
2017
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Influence of MWCNTs on β-Phase PVDF and Triboelectric Properties
by
Song, Youngjun
, Kim, Sejung
, Heller, Michael J.
in
Aluminum
/ Beta phase
/ Crystal structure
/ Dielectric properties
/ Fluorides
/ Fluorine
/ Fourier transforms
/ Microscopy
/ Morphology
/ Multi wall carbon nanotubes
/ Nanocomposites
/ Nanomaterials
/ Nanoparticles
/ Nucleation
/ Performance evaluation
/ Physical chemistry
/ Physics
/ Polymers
/ Polyvinylidene fluorides
/ Studies
2017
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Do you wish to request the book?
Influence of MWCNTs on β-Phase PVDF and Triboelectric Properties
by
Song, Youngjun
, Kim, Sejung
, Heller, Michael J.
in
Aluminum
/ Beta phase
/ Crystal structure
/ Dielectric properties
/ Fluorides
/ Fluorine
/ Fourier transforms
/ Microscopy
/ Morphology
/ Multi wall carbon nanotubes
/ Nanocomposites
/ Nanomaterials
/ Nanoparticles
/ Nucleation
/ Performance evaluation
/ Physical chemistry
/ Physics
/ Polymers
/ Polyvinylidene fluorides
/ Studies
2017
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Influence of MWCNTs on β-Phase PVDF and Triboelectric Properties
Journal Article
Influence of MWCNTs on β-Phase PVDF and Triboelectric Properties
2017
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Overview
The surface of multiwalled carbon nanotubes (MWCNTs) was chemically modified using 1-pyrenebutyric acid (PBA) to improve its compatibility with polyvinylidene fluoride (PVDF). The carboxylic acid groups of the MWCNTs-PBA (PCNTs) provide a β-phase nucleation site to the fluorine of PVDF along their surface. The content of the β-phase crystalline structure of PVDF was found to be the highest at a concentration of 1.0 wt.% of PCNTs, and these PVDF-PCNTs composites were utilized as active layers in triboelectric devices. The maximum output voltage achieved was 16 volts at a concentration of 1.0 wt.% of PCNTs in the PVDF composites.
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