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Market Research Report

Organic Harvest: Opportunities in Organic Electronic Materials, 2007-2015

Published by NanoMarkets Contact us : +1-860-674-8796
Published 2007/12 Content info 135 Pages
Product code NAN55758
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Abstract

"Organic electronics" is widely proposed as a platform for a broad and growing range of electronics products. Small organic LED displays already generate hundreds of millions of dollars. Larger OLED displays will penetrate the television market in the not-too-distant future. Considerable resources are being thrown into making substantial businesses out of organic RFIDs, backplanes based on organic thin-film transistors (OTFTs) and organic solar cells. Organic electronics-based sensors, memory and lighting are not far behind.

As a result of these innovations, conductive polymers, organic photovoltaic materials and other organics used in organic electronics have prospects for moving from a markets measured in kilograms to ones measured in metric tons. At the same time interest in organic electronics is spurring considerable research activity and new product innovations. Small molecule inks, hybrid organic/inorganic materials, and even biological materials are being commercialized for use in various electronics applications.

However, there are also challenges. Organic materials typically exhibit conductivities that are orders of magnitude lower than the silicon semiconductor industry has come to expect. There are also remain major issues about environmental stability of such materials; issues that are spurring growth for encapsulation/barrier materials. And in some quarters there are serious questions being raised about whether organic electronics may not ultimately fail, its role in large-area and thin-film electronics stolen by cheaper and better performing inorganic nanomaterials.

This report analyzes and forecasts the prospects for organic electronics materials in the coming eight years. In the report, we review the range of materials currently be utilized for organic electronics applications and explore interesting research directions that are being taken in universities and industrial labs. We also investigate how the organic materials markets are changing and being changed by manufacturing approaches and how the recent developments are enabling new and improved organic electronics devices.

The report also includes approximately 20 strategic profiles of leading suppliers of materials for organic electronics, and forecasts of demand for these materials in both revenues and volume terms. In these forecasts we break out the market by type of material, manufacturing technology and application.

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