Organic Electronics

Nonfiction, Science & Nature, Technology, Textiles & Polymers, Material Science, Science
Cover of the book Organic Electronics by , Springer Berlin Heidelberg
View on Amazon View on AbeBooks View on Kobo View on B.Depository View on eBay View on Walmart
Author: ISBN: 9783642045387
Publisher: Springer Berlin Heidelberg Publication: December 23, 2009
Imprint: Springer Language: English
Author:
ISBN: 9783642045387
Publisher: Springer Berlin Heidelberg
Publication: December 23, 2009
Imprint: Springer
Language: English

Dear Readers, Since the ground-breaking, Nobel-prize crowned work of Heeger, MacDiarmid, and Shirakawa on molecularly doped polymers and polymers with an alternating bonding structure at the end of the 1970s, the academic and industrial research on hydrocarbon-based semiconducting materials and devices has made encouraging progress. The strengths of semiconducting polymers are currently mainly unfolding in cheap and easily assembled thin ?lm transistors, light emitting diodes, and organic solar cells. The use of so-called “plastic chips” ranges from lightweight, portable devices over large-area applications to gadgets demanding a degree of mechanical ?exibility, which would overstress conventionaldevices based on inorganic,perfect crystals. The ?eld of organic electronics has evolved quite dynamically during the last few years; thus consumer electronics based on molecular semiconductors has gained suf?cient market attractiveness to be launched by the major manufacturers in the recent past. Nonetheless, the numerous challenges related to organic device physics and the physics of ordered and disordered molecular solids are still the subjects of a cont- uing lively debate. The future of organic microelectronics will unavoidably lead to new devi- physical insights and hence to novel compounds and device architectures of - hanced complexity. Thus, the early evolution of predictive models and precise, computationally effective simulation tools for computer-aided analysis and design of promising device prototypes will be of crucial importance.

View on Amazon View on AbeBooks View on Kobo View on B.Depository View on eBay View on Walmart

Dear Readers, Since the ground-breaking, Nobel-prize crowned work of Heeger, MacDiarmid, and Shirakawa on molecularly doped polymers and polymers with an alternating bonding structure at the end of the 1970s, the academic and industrial research on hydrocarbon-based semiconducting materials and devices has made encouraging progress. The strengths of semiconducting polymers are currently mainly unfolding in cheap and easily assembled thin ?lm transistors, light emitting diodes, and organic solar cells. The use of so-called “plastic chips” ranges from lightweight, portable devices over large-area applications to gadgets demanding a degree of mechanical ?exibility, which would overstress conventionaldevices based on inorganic,perfect crystals. The ?eld of organic electronics has evolved quite dynamically during the last few years; thus consumer electronics based on molecular semiconductors has gained suf?cient market attractiveness to be launched by the major manufacturers in the recent past. Nonetheless, the numerous challenges related to organic device physics and the physics of ordered and disordered molecular solids are still the subjects of a cont- uing lively debate. The future of organic microelectronics will unavoidably lead to new devi- physical insights and hence to novel compounds and device architectures of - hanced complexity. Thus, the early evolution of predictive models and precise, computationally effective simulation tools for computer-aided analysis and design of promising device prototypes will be of crucial importance.

More books from Springer Berlin Heidelberg

Cover of the book Lebensbalance im Alter by
Cover of the book Faszination Astronomie by
Cover of the book A Concise Guide to Nuclear Medicine by
Cover of the book Naturschutzrecht im Klimawandel by
Cover of the book Sectional Fetal Anatomy in Ultrasound by
Cover of the book Malignant Mesothelioma by
Cover of the book Service Parts Planning with SAP SCM™ by
Cover of the book Catching Up, Spillovers and Innovation Networks in a Schumpeterian Perspective by
Cover of the book Brain Tumor Imaging by
Cover of the book Agile Werte- und Kompetenzentwicklung by
Cover of the book UV-VIS and Photoluminescence Spectroscopy for Nanomaterials Characterization by
Cover of the book From Newton to Mandelbrot by
Cover of the book Strain Facies by
Cover of the book Positive Entwicklung by
Cover of the book Mikroökonomik by
We use our own "cookies" and third party cookies to improve services and to see statistical information. By using this website, you agree to our Privacy Policy