Printed, Flexible and Organic Electronics

Printed, Flexible and Organic Electronics

Printed Electronics, being thin film silicon or inorganic or organic semiconductors, can be used to form Thin Film Transistor Circuits (TFTCs), such as replacing the functionality of simple silicon chips. TFTCs also employ thin film conductors and dielectrics and the ultimate objective is to make many different components at the same time - such as displays, batteries, sensors, microphones etc using the same materials or at least the same deposition techniques thus saving cost and improving reliability. Some TFTCs will be capable of covering large areas to affordably form electronic billboards, smart shelves and so on. They will be lightweight, rugged and mechanically flexible. Often they will be made by rapid, high-volume reel-to-reel processing even forming a part of regular printing processes for graphics. These circuits will be cheap enough to permit electronics where envisaged silicon chips are always or almost always too expensive, where multiple components and needed, and where silicon is impracticle (e.g. not flexible, brittle, thick etc).
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Printed, Flexible and Organic Electronics
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2012
3 Oct 2012

Beyond ITO: Assessing the opportunity for TCFs

IDTechEx, United Kingdom
3 Oct 2012

Key Challenges in Nanomaterials-based Printed Electronics

Printable Electronics Research Centre, China
3 Oct 2012

DOW's Ethylcellulose in Electronic Pastes

Dow Chemical (China) Co. Ltd.China
3 Oct 2012

Manufacturing Printed Electronic Devices

GSI Technologies, LLC, United States
3 Oct 2012

New Markets for New Photovoltaics

IDTechEx, United Kingdom
3 Oct 2012

The Influence of Contact Properties on Device Performance in Organic Solar Cells

National Renewable Energy Laboratory, United States
3 Oct 2012

Global Supply and Demand for Photovoltaic Technologies 2012 to 2016

Navigant Consulting, United States
3 Oct 2012

Photonic Drying and Heating Technologies for Thermal Processes in PE-Fabrication

Adphos Digital Printing GmbH, Germany
3 Oct 2012

Visualization of Carrier Motion in Organic Devices by Time-resolved Optical Second Harmonic Generation

Tokyo Institute of Technology,Japan
3 Oct 2012

Fully printed Digital-Asynchronous-Logic Circuits on Flexible Plastic Films

Institute of Materials Research and Engineering, Singapore
3 Oct 2012

Markets for Conductive inks 2012-2018

IDTechEx, United Kingdom
2 Oct 2012

Metal Oxide Materials for Large-Area and Transparent Electronics

University of Cambridge, United Kingdom
2 Oct 2012

Materials Development for Organic and Printed Electronics

Solvay, Belgium
2 Oct 2012

Conductive Copper Materials for Printed Electronics

Hitachi Chemical, Japan
2 Oct 2012

Flexible Evolution: Next Generation Glass for Next Generation Displays

Corning, Inc.
2 Oct 2012

Ink Jet Printed Micro-cavity Devices to Realise NTSC Colour Range

Cambridge Display Technology (CDT) Ltd, United Kingdom
2 Oct 2012

TFT Backplane technologies for AMOLED

Kyung Hee University, Korea
2 Oct 2012

Phosphorescent Inks for Energy Efficient Solution Processed OLEDs

Universal Display Corporation, United States
2 Oct 2012

What is the opportunity for OLED lighting versus LED Lighting?

IDTechEx, United Kingdom
2 Oct 2012

Technology and Applications for High Performance Stretchable Electronics

MC10, United States