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[Report]

Electroactive Polymers

Published: 2006/01

Contact 24 hrs/day

Table of Contents

  • INTRODUCTION
      • STUDY GOALS AND OBJECTIVES
      • REASONS FOR DOING THE STUDY
      • SCOPE OF THE STUDY
      • METHODOLOGY
      • BCC ONLINE SERVICES
      • DISCLAIMER
  • SUMMARY
    • Summary Table: GLOBAL FORECAST OF ELECTROACTIVE POLYMER MARKET PRODUCTION, THROUGH 2011
  • ELECTROACTIVE POLYMERS OVERVIEW
      • BACKGROUND
      • INHERENTLY CONDUCTIVE POLYMERS (ICPS)
      • INHERENTLY DISSIPATIVE POLYMERS (IDPS)
      • CONDUCTIVE PLASTICS
      • OTHER ELECTROACTIVE POLYMERS
        • OTHER ELECTROACTIVE POLYMERS (CONTINUED)
  • ELECTRONICS INDUSTRY TRENDS
      • OVERVIEW
      • INDUSTRY DATA
        • SEMICONDUCTOR INDUSTRY REVENUE
    • Table 1 SEMICONDUCTOR REVENUE, 2000-2010 ($ BILLIONS)
    • Figure 1 SEMICONDUCTOR REVENUE, 2000-2010 ($ BILLIONS)
        • MARKET SHARES
  • INHERENTLY CONDUCTIVE POLYMERS (ICPS)
      • OVERVIEW
      • CONCEPT OF CONJUGATED POLYMERS
      • CONDUCTIVE POLYMER HISTORICAL PERSPECTIVE
        • PRIOR TO 1990
        • POST-1990 PERIOD
        • BY THE EARLY 2000S
      • TECHNOLOGY
        • OVERVIEW
        • ENERGY BAND STRUCTURE
        • CHAIN STRUCTURE
        • COMPARISON OF CONDUCTIVITIES OF ICPS WITH METALS, SEMICONDUCTORS AND INSULATORS
    • Table 2 CONDUCTIVITIES OF DOPED ICPS COMPARED WITH METALS, SEMICONDUCTORS AND INSULATORS
        • DIELECTRIC PROPERTIES OF PLASTICS
    • Table 3 DIELECTRIC CONSTANTS FOR SELECTED MATERIALS
        • DOPING
          • Overview
          • Chemical and Electrochemical Methods
          • Reversal of the Doping Process
          • Types of Dopants
          • Goal of Narrow Band Gaps
          • Effect on Color and Optical Properties
    • Table 4 COLOR OF DOPED AND UNDOPED CONDUCTIVE POLYMERS
        • IMPORTANCE OF MOLECULAR WEIGHT AND DISTRIBUTION IN CONDUCTIVE POLYMERS
        • INCREASING STABILITY OF CONDUCTIVE POLYMERS
        • IMPROVING HIGH-TEMPERATURE CONDUCTIVITY AND TEMPERATURE STABILITY
        • ALLOYING AND BLENDING CONDUCTIVE POLYMERS WITH CONVENTIONAL RESINS
          • Background
          • Recent Developments
        • PERFORMANCE ENHANCEMENTS SOUGHT THROUGH ICPS
          • Conductivity
          • Electrochromic Effects
          • Electroluminescence
          • Photoconductivity
          • Superconductivity
          • Thermochromic Effects
        • PROCESSING CONDUCTIVE POLYMERS
          • Background
          • Problems and Challenges
          • Processing Options for ICPs
    • Table 5 ICP PROCESSING TECHNIQUES
    • Table 6 STABILITY AND PROCESSING ATTRIBUTES OF KEY ICPS
      • CONDUCTIVE POLYMER TYPES
        • OVERVIEW
        • POLYTHIOPHENES
          • Nature of the Material
          • Poly(3-Alkylthiophene)
          • Potential Applications
          • Suppliers
          • Recent Developments
        • POLYANILINES
          • Nature of the Material
          • Processing
    • Figure 2 THE FOUR OXIDATION STATES OF POLYANILINE
          • Potential Applications
          • Suppliers
          • Recent Developments
        • POLYPYRROLES
          • Nature of the Material
          • Processing
          • Potential Applications
        • OTHER TYPES OF CONDUCTIVE POLYMERS
          • Polyacetylenes
            • Background
            • Processing
            • Problem of Environmental Instability
            • Potential Applications
          • Polyphenylene Vinylene
          • Polyfluorenes
          • Polyphenylene Sulfide
          • Polynaphthalene
        • RECENT DEVELOPMENTS
          • Dissolving Conductive Polymers
          • Liquid Crystals Impose Order on Conducting Polymers
  • CONDUCTIVE PLASTICS
      • BACKGROUND
      • OVERVIEW
      • TECHNIQUES FOR MAKING PLASTICS CONDUCTIVE
        • OVERVIEW
    • Table 7 HOW TO MAKE PLASTICS CONDUCTIVE
        • CONCEPT OF RESISITIVITIES
          • Overview
    • Table 8 RESISTANCE SPECTRUM FOR METHODS OF MAKING PLASTICS CONDUCTIVE
          • Concepts and Nomenclature
        • TYPES OF CONDUCTIVE MATERIALS
        • CONDUCTIVE PLASTIC ADDITIVES
          • Overview
          • ESD/EMI Compounds
          • Antistatic Additives
          • Metal Fibers
            • Overview
            • Stainless Steel Fibers
            • Other Metal Fibers
          • Carbon Fibers
          • Carbon Blacks
        • TECHNICAL ISSUES
        • COSTS
        • RESINS USED
        • NEW DEVELOPMENTS
          • Carbon Nanotubes
            • Overview
            • Company Activities
        • CONDUCTIVE FILLER SUPPLIERS
    • Table 9 CONDUCTIVE FILLER SUPPLIERS
        • OTHER CONDUCTIVE PLASTIC SYSTEMS
          • Conductive Paints and Coatings
            • Background
            • Overview
            • Performance of Alternate Conductive Coatings
              • Background
              • Copper
              • Silver
              • Nickel
            • Comparisons
            • Other Aspects
            • Conductive Coating Cost Comparisons
          • Coated Plastics for ESD Control
          • Conductive Elastomers
        • COMPOUNDING CONDUCTIVE PLASTICS
        • KEY SUPPLIERS AND EXAMPLES OF THEIR CONDUCTIVE PLASTIC PRODUCTS
          • Boedeker Plastics
          • Cabot
          • Ciba Specialty Chemicals
          • Eastman Chemical
          • LNP Engineering
          • Noveon
          • PolyOne
          • RTP
        • NEW PRODUCTS
          • Eeonyx
          • Noveon
          • Premix Thermoplastics
  • INHERENTLY DISSIPATIVE POLYMERS (IDPS)
      • OVERVIEW
      • TECHNOLOGICAL ASPECTS AND PROBLEMS
        • SUPPLIERS
  • OTHER ELECTROACTIVE POLYMERS
      • BACKGROUND
      • TECHNOLOGY
        • OVERVIEW
        • EXAMPLES
        • CHIP TECHNOLOGY WILL BE THE DRIVER
        • DIELECTRIC DEPOSITION TECHNOLOGY
    • Table 10 COMPARISON OF GAS-PHASE DEPOSITION AND SPIN-COATING OF POLYMER DIELECTRICS
        • POLYMERS
        • POLYIMIDES
        • PENTACENES
        • POLYNORBORNENE
        • POLYARYL ETHERS
        • PERFLUORINATED ALIPHATIC POLYMERS
        • OTHER POLYMERS
          • Polybenzoxazoles
          • Poly(phenylquinoxalines)
          • Poly(quinolines)
          • Parylenes
          • SiLK Resins
          • Benzocylcobutene
        • POROUS MATERIALS
  • MARKET ESTIMATES AND FORECASTS
      • INHERENTLY CONDUCTIVE POLYMERS
        • BACKGROUND
        • OVERALL MARKET BY VOLUME
    • Table 11 GLOBAL FORECAST OF ICP MARKET PRODUCTION BY TYPE OF RESIN BY VOLUME, THROUGH 2011 (THOUSAND POUNDS)
    • Table 11 (CONTINUED)
        • PRICING
          • Polythiophenes
          • Polyanilines
          • Polypyrroles
          • Lowering Costs
        • OVERALL ICP MARKET VALUE
    • Table 12 GLOBAL FORECAST OF THE ICP MARKET BY TYPE OF RESIN, THROUGH 2011 ($ MILLIONS)
    • Figure 3 GLOBAL FORECAST OF THE ICP MARKET BY TYPE OF RESIN, 2005-2011 ($ MILLIONS)
        • ICP MARKET ESTIMATES BY APPLICATION
          • Overview
          • Polythiophenes
    • Table 13 GLOBAL FORECAST OF POLYTHIOPHENE MARKET PRODUCTION BY APPLICATION, THROUGH 2011 (THOUSAND POUNDS)
          • Polyanilines
    • Table 14 POLYANILINE MARKET PRODUCTION BY APPLICATION, THROUGH 2011 (THOUSAND POUNDS)
          • Polypyrroles
    • Table 15 POLYPYRROLE MARKET PRODUCTION BY APPLICATION, THROUGH 2011 (THOUSANDS POUNDS)
          • Other ICPs
    • Table 16 GLOBAL FORECAST OF OTHER ICP MARKET PRODUCTION BY APPLICATION 1, THROUGH 2011 (THOUSAND POUNDS)
      • LOW-DIELECTRIC POLYMERS
      • CONDUCTIVE PLASTICS
        • RESINS
    • Table 17 GLOBAL FORECAST OF CONDUCTIVE PLASTIC MARKET PRODUCTION BY TYPE OF RESIN, THROUGH 2011 (MILLION POUNDS)
    • Table 18 GLOBAL FORECAST OF CONDUCTIVE PLASTIC MARKET VALUE BY TYPE OF RESIN, THROUGH 2011 ($ MILLIONS)
    • Figure 4 GLOBAL FORECAST OF CONDUCTIVE PLASTIC MARKET VALUE BY TYPE OF RESIN, THROUGH 2011 ($ MILLIONS)
        • FILLERS
    • Table 19 GLOBAL FORECAST OF FILLER MARKET PRODUCTION FOR ESD STATIC CONTROL POLYMERS, THROUGH 2011 (MILLION POUNDS)
      • SUPPLIER MARKET ESTIMATES
    • Table 20 GLOBAL MARKET SHARE OF ICP SUPPLIERS, 2005 (%)
    • Table 21 GLOBAL MARKET SHARE OF CONDUCTIVE PLASTICS SUPPLIERS, 2005 (%)
  • APPLICATIONS OF ELECTROACTIVE POLYMERS
      • BACKGROUND
      • INHERENTLY CONDUCTIVE POLYMERS
        • POTENTIAL/ CURRENT APPLICATIONS OF ICPS
          • Overview
    • Table 22 POTENTIAL ICP APPLICATIONS BY MARKET
          • Specific Potential Applications
      • OTHER ELECTROACTIVE POLYMERS
        • CONDUCTIVE PLASTICS
        • IDPS
        • LOW DIELECTRIC POLYMERS
      • OVERVIEW OF COMPETITIVE SCENARIO BETWEEN ICPS AND CONDUCTIVE PLASTICS
    • Table 23 COMPETITIVE APPLICATION AREAS FOR ICPS AND TRADITIONAL CONDUCTIVELY FILLED THERMOPLASTICS
      • REPORT COVERAGE OF ELECTROACTIVE POLYMER APPLICATIONS
      • ELECTRONIC DISPLAYS
        • BACKGROUND
    • Table 24 GLOBAL FORECAST OF TV ELECTRONIC DISPLAY SCREEN SHIPMENTS, THROUGH 2010 ($ BILLIONS)
          • Cathode Ray Tubes Are Still Around
        • FLAT PANEL DISPLAYS
          • Overview
          • Data on Segments
    • Table 25 FLAT PANEL DISPLAY MARKET VALUE BY SEGMENT, THROUGH 2006 ($ THOUSAND)
    • Figure 5 FLAT PANEL DISPLAY MARKET VALUE BY SEGMENT, THROUGH 2006 ($ THOUSAND)
          • Distribution by Product
    • Table 26 FLAT PANEL MARKET VALUE BY PRODUCT, THROUGH 2005 (PERCENT OF TOTAL)
          • Liquid Crystal Flat Panel Displays
            • Overview
            • Background
            • Materials and Technology
            • Costs
            • Spectre of Overcapacity
          • Other Flat Panel Display Types
            • Plasma Displays
            • Digital Light Processing (DLPs)
            • Field Emission Displays (FEDs)
            • Liquid Crystal on Silicon (LCOS)
            • Surface-Conduction Electron Emitter Displays (SEDs)
            • Nano-Emissive Displays
        • LIGHT-EMITTING DIODES
          • Background
          • Organic Light-Emitting Diodes
            • Overview
            • Some Definitions
            • Historical Background
            • How OLEDs Work
            • Additional Technical Details
            • OLED Technology Summary
            • Advantages of OLEDs
            • Disadvantages of OLEDs
            • Early Applications
              • Overview
              • Automotive Lighting
              • Signs
            • Potential Market Size
            • Early Use of ICPs
            • Recent Developments
              • Overview
              • Munich University and Covion
              • Samsung Developments
              • Universal Display
              • Cambridge Display Technologies (CDT)
              • U.S. Display Consortium (USDC)
            • Department of Energy and General Electric
            • Roadblocks to ICP Use
            • Regional Problems
            • Early Company Involvement in OLEDs
            • More Recent Company Activities
            • Most Recent Corporate OLED Developments
              • Bayer
              • Recent Entries into OLEDs
            • Leading OLED Suppliers
    • Table 27 LEADING OLED SHIPPING SUPPLIERS, 2005 ($ MILLION)
      • SEMICONDUCTOR TRANSISTORS
        • BACKGROUND
        • MOORES LAW
        • SILICON TECHNOLOGY
        • POSITION OF SILICON SUBSTRATES
        • SILICON-FREE INTEGRATED CIRCUITS?
        • CONCEPT OF PLASTIC ELECTRONICS
        • POLYMERS USED FOR PLASTIC/ORGANIC TRANSISTORS
        • PROCESSES AND APPLICATIONS
        • FLEXIBLE ELECTRONICS-A POTENTIALLY PROMISING OUTLET
          • Overview
          • Background
          • Potential Applications-Rollable Displays
            • Overview
            • Potential Advantages
            • Microelectronic Circuits Based on Organic Films
              • Background
              • Potential Use of Polythiophene
              • Company Activities
              • Dry-Laser Method
              • Philips Polymer Vision
              • Cambridge Display Technologies and Plastic Logic
          • Other Potential Commercial Use of Organic Semiconductors
            • Background
            • Recent Developments
              • Infineon Technologies
              • More Stable Plastic Semiconductors
              • Semiconductive Inks Move Plastic Transistors Closer to Commercialization
              • A Plastic Electronics Material Advance
              • Electrochromic Polymer Films
        • ORGANIC SEMICONDUCTOR TOPICS IN THE FOREFRONT
      • CAPACITORS
        • OVERVIEW
        • ADVANTAGES
        • POTENTIAL MARKETS
        • A NEW DEVELOPMENT -POLYMER ULTRACAPACITORS
      • SENSORS
        • OVERVIEW
        • BACKGROUND
        • REMOTELY READABLE INDICATORS
        • GAS SENSORS
        • ODOR SENSORS
        • CHEMICAL SENSORS
        • BIOSENSORS
        • USE OF MICROELECTRODES
        • RECENT DEVELOPMENTS
          • Use of Sulfonated Aromatics
          • Abtech Scientific
          • Polymer Membrane Sensor Arrays
      • CORROSION-RESISTANT COATINGS
        • OVERVIEW
        • POTENTIAL ROLE OF ICPS
        • ADVANTAGES OF ICP-BASED ANTI-CORROSION COATINGS:
        • APPLICATIONS OF ICP-BASED ANTI-CORROSION COATINGS
        • A RECENT DEVELOPMENT
      • TEXTILES/ FABRICS (ELECTROTEXTILES)
        • BACKGROUND
        • MATERIALS USED TO CREATE CONDUCTIVE FIBERS
        • FIBERS THAT CAN BE USED TO MAKE CONDUCTIVE FABRICS
    • Table 28 TYPES OF FIBERS THAT CAN BE USED IN CONDUCTIVE FABRICS
        • NEW MATERIALS
        • APPLICATIONS
      • SOLAR CELLS
        • OVERVIEW
        • RECENT DEVELOPMENTS
      • BATTERIES
        • BACKGROUND
        • LITHIUM-POLYMER BATTERIES
          • Overview
          • Technology
          • Advantages and Disadvantages
        • CONCEPT OF ALL POLYMER BATTERY
        • BUTTON BATTERIES
        • AUTOMOTIVE BATTERIES
        • PORTABLE COMPUTER BATTERIES
        • SUMMARY OF MARKET POTENTIAL FOR ICPS IN BATTERIES
        • NEW DEVELOPMENTS
          • Background
          • Polymeric Electrolytes
      • MISCELLANEOUS APPLICATIONS
        • PLASTIC LASERS
        • MEMBRANES
          • Background
          • Potential of ICPs
        • AVIATION/AEROSPACE
          • Overview
          • Smart Skin/Stealth Technology
        • FUEL CELLS
          • Overview
          • Background
          • Challenges
          • Fuel Cell Types
        • RFID TAGS/LABELS
          • Background
          • Applications
          • Role of Electroactive Polymers
        • MICROTOOLS
        • PRINTING PLATES
        • BIOLOGICAL DEVICES
        • SMART WINDOWS
        • PHARMACEUTICALS
        • CAMOUFLAGE COATINGS
        • SOLDERS
        • ELECTROLUMINESCENT LAMPS
      • CONDUCTIVE PLASTICS APPLICATIONS
        • OVERVIEW
        • ELECTROSTATIC DISCHARGE (ESD)
          • Technology Background
          • Device Failures Due to ESD Damage
          • How Much Static Protection is Needed?
          • Summing Up the ESD Scenario
          • ESD in the Electronics Industry
          • ESD Controls
            • Background
            • Materials and Methods
            • Use of Chemical Additives
              • Background
              • Technology
              • Use of Conductive Fillers
              • Use of Coated Sheets
          • Role of Plastics in ESD Control
          • Static-Dissipative Polymers
          • ICP Potential
            • Overview
            • Thermoplastic ICP Compounds
          • New Developments
            • Permanent Antistats
            • Carbon Nanotubes for Static Dissipation
            • More Automotive Products for ESD Protection
          • Representative Company ESD Products
    • Table 29 SELECTED KEY ESD PLASTIC PRODUCTS
          • Recent ESD Activities Within the Electronics Industry
            • Background
            • Protecting Printed Circuit Boards from ESD
        • ANTI-STATIC PACKAGING
          • Background
          • Technologies and Testing
          • Topical Coatings
          • Permanently Static-Dissipative Polymers
          • Types of Products and Additives Used
            • Carbon Black
            • Powdered Metals
            • Mixed-Metal Oxides
          • Polymer Alloys
          • Permanent Coatings
          • Other Characteristics of Materials Used in Anti-Static Packaging
    • Table 30 GENERAL PERFORMANCE CHARACTERISTICS OF SOME COMMERCIALLY AVAILABLE ANTI-STATIC PACKAGING MATERIALS
          • Examples of Anti-Static Packaging Products
          • New Products for Static Dissipation
        • ELECTROMAGNETIC INTERFERENCE (EMI)
          • Background
          • Overview of EMI Shielding
          • Mechanisms of Shielding
          • Electromagnetic Control
          • The Importance of Shielding
          • Controlling EMI
          • Use of Conductive Plastics
            • Background
            • Functions
            • Role of ICPs and IDPs
            • Conductive Additive Selection
    • Table 31 SURFACE RESISTIVITY FOR ELECTRONICS DEVICE SUBSTRATES
            • Conductivity Tests
            • Advantages and Disadvantages
              • Advantages and Disadvantages (continued)
            • Use of Inherently Conductive Polymers
          • Use of Inherently Dissipative Plastics
        • ELECTROSTATIC PAINTABLE PLASTICS
          • Overview
          • Functions
          • Electrostatic Paintable Compounds
            • Background
            • Applications
          • Concept of Compliance Coatings
          • Other Auto Exterior Coating Technologies Competing With Electrostatic Paintable Plastics
            • Powder Coatings
            • UV-Cured Coatings
            • Molded-in-Color Automotive Exteriors
            • Dry Paint
              • Background
              • Technology
          • New Electrostatically Paintable Plastic Products
            • Bayer
            • Rhodia
      • MARKET ESTIMATES AND FORECASTS
        • OVERVIEW
    • Table 32 GLOBAL FORECAST OF ELECTROACTIVE POLYMER PRODUCTION BY APPLICATION, THROUGH 2011 (THOUSAND POUNDS)
        • ICP MARKETS BY APPLICATION
          • Overview
    • Table 33 ICP MARKET PRODUCTION BY APPLICATION, THROUGH 2011 (THOUSAND POUNDS)
    • Table 33 (CONTINUED)
          • Capacitors
    • Table 34 GLOBAL FORECAST FOR THE ICP PRODUCTION CAPACITOR MARKET BY POLYMER TYPE, THROUGH 2011 (THOUSAND POUNDS)
          • ESD/Antistatic Packaging
    • Table 35 ICP PRODUCTION FOR THE ESD/ANTISTATIC PACKAGING MARKET BY POLYMER TYPE, THROUGH 2011 (THOUSAND POUNDS)
          • Anti-Corrosion Coatings
    • Table 36 ICP PRODUCTION FOR THE ANTI-CORROSION COATING MARKET BY POLYMER TYPE, THROUGH 2011 (THOUSAND POUNDS)
          • Sensors
    • Table 37 GLOBAL FORECAST FOR THE ICP PRODUCTION SENSOR MARKET BY POLYMER TYPE, THROUGH 2011 (THOUSAND POUNDS)
          • OLEDs
    • Table 38 GLOBAL FORECAST FOR ICP PRODUCTION FOR THE OLED MARKET BY POLYMER TYPE, THROUGH 2011 (THOUSAND POUNDS)
          • Solar Cells
    • Table 39 GLOBAL FORECAST ICP PRODUCTION FOR THE SOLAR CELL MARKET BY POLYMER TYPE, THROUGH 2011 (THOUSAND POUNDS)
          • Textiles/Fabric
    • Table 40 GLOBAL FORECAST OF ICP PRODUCTION FOR THE TEXTILE/FABRIC MARKET BY POLYMER TYPE, THROUGH 2011 (THOUSAND POUNDS)
          • Organic Transistors
    • Table 41 GLOBAL FORECAST OF ICP PRODUCTION FOR THE ORGANIC TRANSISTOR MARKET BY POLYMER TYPE, THROUGH 2011 (THOUSAND POUNDS)
          • Batteries
    • Table 42 GLOBAL FORECAST OF ICP PRODUCTION FOR THE BATTERY MARKET BY POLYMER TYPE, THROUGH 2011 (THOUSAND POUNDS)
          • Miscellaneous Applications
    • Table 43 GLOBAL FORECAST OF ICP PRODUCTION FOR MISCELLANEOUS APPLICATIONS BY POLYMER TYPE, THROUGH 2011 (THOUSAND POUNDS)
    • Table 44 GLOBAL FORECAST OF CONDUCTIVE PLASTICS MARKET PRODUCTION BY APPLICATION, THROUGH 2011 (MILLION POUNDS) (1)
  • RESEARCH AND DEVELOPMENT ACTIVITIES
      • ICPS
      • RECENT ELECTROACTIVE POLYMER SELECTED PATENT ACTIVITY
        • OVERVIEW
        • DETAILS
          • Details (Continued)
          • Details (Continued)
          • Details (Continued)
  • INDUSTRY STRUCTURE
      • INDUSTRY STRUCTURE
        • INDUSTRY STRUCTURE (CONTINUED)
  • LICENSING/JOINT VENTURE COMPANY ACTIVITIES
      • OVERVIEW
      • RTP LICENSING ARRANGEMENT WITH PANIPOL
      • NOVEON AND POLYONE TO MARKET ELECTROSTATIC DISSIPATIVE COMPOUNDS
      • POLYONE AND GEOTECH
      • CAMBRIDGE DISPLAY TECHNOLOGIES & SUMITOMO
      • ORMECON AND NISSAN CHEMICAL
      • PANIPOL AND PREMIX
      • COVION AND CDT
  • SELECTED ELECTROACTIVE POLYMER PRODUCT LINES
    • Table 45 ICP AND CONDUCTIVE PLASTICS PRODUCT LINES
    • Table 45 (CONTINUED)
  • COMPANY PROFILES
      • ABTECH SCIENTIFIC, INC.-RICHMOND, VA
      • AGFA-GEVAERT GROUP-MORTSEL, BELGIUM
      • AMERICAN DYE SOURCE, INC.-QUEBEC, CANADA
      • BAYER/LANXESS-PITTSBURGH, PA
      • CAMBRIDGE DISPLAY TECHNOLOGY-CAMBRIDGE, U.K.
      • CENTRAL CORP.-YAMANASHI, JAPAN
      • COVION ORGANIC SEMICONDUCTORS-FRANKFURT, GERMANY
      • CROSSLINK POLYMER RESEARCH-ST. LOUIS, MO
      • DOW CHEMICAL-MIDLAND, MI
      • DUPONT DISPLAYS-WILMINGTON, DE
      • EEONYX - PINHOLE, CA
      • GEO TECH CHEMICAL-TALLMADGE, OH
      • GOEX, INC.-JANESVILLE, WI
      • KEMET CAPACITORS-GREENVILLE, SC
      • KLOCKNER PENTAPLAST OF AMERICA - GORDONSVILLE, VA
      • LNP ENGINEERING PLASTICS-EXTON, PA
      • MARKTEK, INC.-CHESTERFIELD, MO
      • MERCK KGAA-DARMSTADT, GERMANY
      • MILLIKEN RESEARCH CORP.-SPARTANBURG, SC
      • NANOGENESYS, INC.-AMHERST, NY
      • NOVEON-BRECKSVILLE, OH
      • ORMECON CHEMIE-AMMERSBECK, GERMANY
      • PANIPOL LTD.-PORVOO, FINLAND
      • PLASTIC LOGIC-CAMBRIDGE, ENGLAND
      • PLEXTRONICS, INC.-PITTSBURGH, PA
      • POLYMER VISION-THE NETHERLANDS
      • POLYONE-AVON LAKE, OH
      • RTP COMPANY-WINONA, MN
      • UNIVERSAL DISPLAY CORP.-EWING, NJ
      • STERLING FIBERS-PACE, FL
  • APPENDIX
      • ACRONYMS
        • ACRONYMS (CONTINUED)
  • LIST OF TABLES
  • Summary Table:
  • Table 1 SEMICONDUCTOR REVENUE, 2000-2010 ($ BILLIONS)
  • Table 2 CONDUCTIVITIES OF DOPED ICPS COMPARED WITH METALS, SEMICONDUCTORS AND INSULATORS
  • Table 3 DIELECTRIC CONSTANTS FOR SELECTED MATERIALS
  • Table 4 COLOR OF DOPED AND UNDOPED CONDUCTIVE POLYMERS
  • Table 5 ICP PROCESSING TECHNIQUES
  • Table 6 STABILITY AND PROCESSING ATTRIBUTES OF KEY ICPS
  • Table 7 HOW TO MAKE PLASTICS CONDUCTIVE
  • Table 8 RESISTANCE SPECTRUM FOR METHODS OF MAKING PLASTICS CONDUCTIVE
  • Table 9 CONDUCTIVE FILLER SUPPLIERS
  • Table 10 COMPARISON OF GAS-PHASE DEPOSITION AND SPIN-COATING OF POLYMER DIELECTRICS
  • Table 11 GLOBAL FORECAST OF ICP MARKET PRODUCTION BY TYPE OF RESIN BY VOLUME, THROUGH 2011 (THOUSAND POUNDS)
  • Table 12 GLOBAL FORECAST OF THE ICP MARKET BY TYPE OF RESIN, THROUGH 2011 ($ MILLIONS)
  • Table 13 GLOBAL FORECAST OF POLYTHIOPHENE MARKET PRODUCTION BY APPLICATION, THROUGH 2011 (THOUSAND POUNDS)
  • Table 14 POLYANILINE MARKET PRODUCTION BY APPLICATION, THROUGH 2011 (THOUSAND POUNDS)
  • Table 15 POLYPYRROLE MARKET PRODUCTION BY APPLICATION, THROUGH 2011 (THOUSANDS POUNDS)
  • Table 16 GLOBAL FORECAST OF OTHER ICP MARKET PRODUCTION BY APPLICATION 1, THROUGH 2011 (THOUSAND POUNDS)
  • Table 17 GLOBAL FORECAST OF CONDUCTIVE PLASTIC MARKET PRODUCTION BY TYPE OF RESIN, THROUGH 2011 (MILLION POUNDS)
  • Table 18 GLOBAL FORECAST OF CONDUCTIVE PLASTIC MARKET VALUE BY TYPE OF RESIN, THROUGH 2011 ($ MILLIONS)
  • Table 19 GLOBAL FORECAST OF FILLER MARKET PRODUCTION FOR ESD STATIC CONTROL POLYMERS, THROUGH 2011 (MILLION POUNDS)
  • Table 20 GLOBAL MARKET SHARE OF ICP SUPPLIERS, 2005 (%)
  • Table 21 GLOBAL MARKET SHARE OF CONDUCTIVE PLASTICS SUPPLIERS, 2005 (%)
  • Table 22 POTENTIAL ICP APPLICATIONS BY MARKET
  • Table 23 COMPETITIVE APPLICATION AREAS FOR ICPS AND TRADITIONAL CONDUCTIVELY FILLED THERMOPLASTICS
  • Table 24 GLOBAL FORECAST OF TV ELECTRONIC DISPLAY SCREEN SHIPMENTS, THROUGH 2010 ($ BILLIONS)
  • Table 25 FLAT PANEL DISPLAY MARKET VALUE BY SEGMENT, THROUGH 2006 ($ THOUSAND)
  • Table 26 FLAT PANEL MARKET VALUE BY PRODUCT, THROUGH 2005 (PERCENT OF TOTAL)
  • Table 27 LEADING OLED SHIPPING SUPPLIERS, 2005 ($ MILLION)
  • Table 28 TYPES OF FIBERS THAT CAN BE USED IN CONDUCTIVE FABRICS
  • Table 29 SELECTED KEY ESD PLASTIC PRODUCTS
  • Table 30 GENERAL PERFORMANCE CHARACTERISTICS OF SOME COMMERCIALLY AVAILABLE ANTI-STATIC PACKAGING MATERIALS
  • Table 31 SURFACE RESISTIVITY FOR ELECTRONICS DEVICE SUBSTRATES
  • Table 32 GLOBAL FORECAST OF ELECTROACTIVE POLYMER PRODUCTION BY APPLICATION, THROUGH 2011 (THOUSAND POUNDS)
  • Table 33 ICP MARKET PRODUCTION BY APPLICATION, THROUGH 2011 (THOUSAND POUNDS)
  • Table 34 GLOBAL FORECAST FOR THE ICP PRODUCTION CAPACITOR MARKET BY POLYMER TYPE, THROUGH 2011 (THOUSAND POUNDS)
  • Table 35 ICP PRODUCTION FOR THE ESD/ANTISTATIC PACKAGING MARKET BY POLYMER TYPE, THROUGH 2011 (THOUSAND POUNDS)
  • Table 36 ICP PRODUCTION FOR THE ANTI-CORROSION COATING MARKET BY POLYMER TYPE, THROUGH 2011 (THOUSAND POUNDS)
  • Table 37 GLOBAL FORECAST FOR THE ICP PRODUCTION SENSOR MARKET BY POLYMER TYPE, THROUGH 2011 (THOUSAND POUNDS)
  • Table 38 GLOBAL FORECAST FOR ICP PRODUCTION FOR THE OLED MARKET BY POLYMER TYPE, THROUGH 2011 (THOUSAND POUNDS)
  • Table 39 GLOBAL FORECAST ICP PRODUCTION FOR THE SOLAR CELL MARKET BY POLYMER TYPE, THROUGH 2011 (THOUSAND POUNDS)
  • Table 40 GLOBAL FORECAST OF ICP PRODUCTION FOR THE TEXTILE/FABRIC MARKET BY POLYMER TYPE, THROUGH 2011 (THOUSAND POUNDS)
  • Table 41 GLOBAL FORECAST OF ICP PRODUCTION FOR THE ORGANIC TRANSISTOR MARKET BY POLYMER TYPE, THROUGH 2011 (THOUSAND POUNDS)
  • Table 42 GLOBAL FORECAST OF ICP PRODUCTION FOR THE BATTERY MARKET BY POLYMER TYPE, THROUGH 2011 (THOUSAND POUNDS)
  • Table 43 GLOBAL FORECAST OF ICP PRODUCTION FOR MISCELLANEOUS APPLICATIONS BY POLYMER TYPE, THROUGH 2011 (THOUSAND POUNDS)
  • Table 44 GLOBAL FORECAST OF CONDUCTIVE PLASTICS MARKET PRODUCTION BY APPLICATION, THROUGH 2011(MILLION POUNDS)
  • Table 45 ICP AND CONDUCTIVE PLASTICS PRODUCT LINES
  • LIST OF FIGURES
  • Figure 1 SEMICONDUCTOR REVENUE, 2000-2010 ($ BILLIONS)
  • Figure 2 THE FOUR OXIDATION STATES OF POLYANILINE
  • Figure 3 GLOBAL FORECAST OF THE ICP MARKET BY TYPE OF RESIN, 2005-2011 ($ MILLIONS)
  • Figure 4 GLOBAL FORECAST OF CONDUCTIVE PLASTIC MARKET VALUE BY TYPE OF RESIN, THROUGH 2011 ($ MILLIONS)
  • Figure 5 FLAT PANEL DISPLAY MARKET VALUE BY SEGMENT, THROUGH 2006 ($ THOUSAND)

[Report]
Electroactive Polymers
Published: 2006/01
Published by : BCC Research BCC Research

Price:
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Product Code : BC35496
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