Acute Market Reports announces that it has a new study on: Flexible Glass Market Shares and Forecasts, Worldwide, 2010-2016. Flexible glass is useful as a substrate for deposition of nanotechnology materials used to create solar panels, thin film batteries, and HDD drives. Substrates are needed for nanotechnology implementations of different devices including materials used in the aircraft and building industries. The study has 232 pages and 70 tables and figures.
Nanotechnology frequently involves sputtering some active material onto a substrate at high temperature and in a vacuum. Flexible glass is a valuable substrate because of its handling characteristics chemical characteristics, and the overall maturity of the glass industry.
Analysis of flexible glass markets depends on looking at the need for substrates for nanotechnology including the thin film solar and battery markets which in turn depend on the number of autos sold and number of solar panels. In addition there are a lot of metrics to look at, including number of concentrating solar installations up coming, number of LCD TVs, number of thin film batteries, number of semiconductors, and number of HDD components.
Electric power from renewable sources, particularly solar energy promises a new generation of utility companies that replace large fossil fuel generating plants with substations that gather electricity from commercial rooftops near the demand for electricity. Electric vehicles will be recharged from stationary batteries located near suburban homes.
Flexible glass has a higher threshold for heat management than polymer. Polymers will melt at temperatures where glass substrate remains stable. Glass markets overall continue to be strong. Corning expects worldwide glass demand to reach 2.7-2.8 billion square feet in 2010, up from 2.4 billion square feet in 2009. Glass shipments can be analyzed at a rate of 37% residential, 21% commercial, 28% automotive, and 17% specialty glass.
Following is a forecast for flexible glass substrate markets that represent but a fraction of the overall solar panel markets. Starting from zero in 2010, the market reaches $1 billion by 2016 representing just a fraction of overall spending on solar panels. After that, the markets are anticipated to grow significantly capturing a large part of the solar panel and other nanotechnology manufacturing production.
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Market growth is a result of demand for nanotechnology that benefits from controlling matter on an atomic and molecular scale. New properties of matter are evolving rapidly.
FLEXIBLE GLASS EXECUTIVE SUMMARY
Flexible Glass Market Driving Forces
Flexible Glass as Substrates for Nanotechnology Deposition
Flexible Glass Used In A New Way Of Generating Solar Power
Lithium-ion and Advanced Lithium Battery Substrate Market Forecasts
1. FLEXIBLE GLASS MARKET DESCRIPTION AND DYNAMICS
1.1 Ultra Thin Flexible Glass Substrates
1.1.1 Nanotechnology Depends On Substrates
1.1.2 OLED Technology Ultra Thin Flexible Glass Substrates
1.1.3 Wearable Displays
1.2 Flexible Glass Replaces Polymer Foils
1.3 Solar Panels Built on Flexible Glass For Building Facades
1.3.1 Glass As A Building Material
1.3.2 Focus on Energy Efficiency with Glass
1.3.3 Characteristics Of A Thin Film Solar Cell
1.4 Vacuum Coating Technologies
2. FLEXIBLE GLASS MARKET SHARES AND MARKET FORECASTS
2.1 Flexible Glass Market Driving Forces
2.1.1 Flexible Glass as Substrates for Nanotechnology Deposition
2.2 Flexible Glass Used In A New Way Of Generating Solar Power
2.2.1 Flexible Glass Processes Protect Flexible Solar Power Shingles
2.2.3 Asahi Glass
2.3 Lithium-ion and Advanced Lithium Battery Substrate Market Forecasts
2.4 Flexible Glass for Imprint Molding Processes
2.4.1 Passive Optics and LED Imprints
2.4.2 LED Component Imprinting
2.5 HDD Patterned Media
2.6 Imprint For Biological Applications
2.7 Imprint For Integrated Circuits
2.8 Glass Production Regional Analysis
3. FLEXIBLE GLASS PRODUCT DESCRIPTION
3.1 Flexible Glass as Substrates
3.1.2 Corning 0211 Thin, Lightweight, Flexible Glass
3.2 Asahi Glass
3.2.1 Asahi Glass Flexible Solar Cell
3.2.2 Asahi Glass ETFE Film
3.2.3 Asahi Glass Flexible Solar Cells
3.2.4 Asahi Glass Textured Surface Film Traps Light, Enables Highly Efficient Solar Cell
3.3 DuPont™ Substrate Materials: Robust Processing Thin Film Solar Performance
3.3.1 DuPont™ Kapton® Polyimide Films
3.3.2 DuPont Teflon® FEP
3.3.3 DuPont Tefzel® ETFE
3.4 Vitex Systems
3.4.1 Vitex Systems Barix™ Barrier Film (BBF)
3.4.2 Vitex Processes Protect Flexible Solar Power Shingles
3.6 Applied Quantum Technology
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