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polymer/carbon nanotube film

Based on

1 Articles
2 Patents
2014 Most recent source

Composition

1

poly(3-hexylthiophene)

Type Polymer
Formula
Role binder
2

single-walled carbon nanotubes

SWCNT
Type Nano Material
Formula
Role fillers
3

4-methylphenyl-4-(1-methylethyl)phenyliodonium tetrakis(pentafluorophenyl)borate

4-isopropyl-4'-methyldiphenyliodonium tetrakis(pentafluorophenyl) borate 4-isopropyl-4'-methyldiphenyliodonium tetrakis(pentafluorophenyl)borate 4-isopropyl-4-methyldiphenyl-iodonium tetrakis(pentafluorophenyl)borate PI2074 TPFB PPBI
Type Single Compound
Formula C40H18BF20I
Role dopant

Properties

General physical and chemical properties

Property Value Nanomaterial Variant Source
electrical conductivity

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Applications

Area Application Nanomaterial Variant Source
electrodes/electrolytes

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Characterization

Method Nanomaterial Variant Source
UV-Vis-NIR optical spectroscopy

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Preparation

Method 1

Type: Chemical synthesis
Source:
Starting materials
  1. IHOz41sWSfW9L25axp4UnE
  2. PzmjDyqRAH
Product

polymer/carbon nanotube film

Thickness: 50 nm

Medium: none

Support: soda-lime-silica glass

Method 2

Type: Physical formation
Source:
Starting materials
  1. PKB4iDB8HeH1Xjz2p3gdSN
  2. SV8mMhGMLP
Product

polymer/carbon nanotube film

Thickness: 50 nm

Medium: none

Support: soda-lime-silica glass

Method 3

Type: Chemical synthesis
Source:
Starting materials
  1. haVNOTft3CsvHnMwDYzmEw
  2. rioQPtZhdU
Product

polymer/carbon nanotube film

Thickness: 50 nm

Medium: none

Support: soda-lime-silica glass

Method 4

Type: Chemical synthesis
Source:
Starting materials
  1. JvBWTHuhSFehsLKqtdEU16
  2. qbeFUbyZwo
Product

polymer/carbon nanotube film

Thickness: 50 nm

Medium: none

Support: soda-lime-silica glass

Method 5

Type: Physical formation
Source:
Starting materials
  1. S02KUyaYU76hDHujXE9N8d
  2. Z3XjirHZQp
Product

polymer/carbon nanotube film

Thickness: 50 nm

Medium: none

Support: soda-lime-silica glass

References

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