Investigating the Nucleation, Growth, and Energy Levels of Organic Semiconductors for High Performance Plastic Electronics

Virkar, Ajay

ISBN 10: 1461430151 ISBN 13: 9781461430155
Verlag: Springer/Sci-Tech/Trade, 2013
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This thesis details the significant progress made in improving the performance of organic transistors and the network conductivity of carbon nanotubes. This advancing field represents an important step towards the realization of large area organic circuity. Series: Springer Theses. Num Pages: 144 pages, biography. BIC Classification: TC; TDC; TJFD5. Category: (P) Professional & Vocational. Dimension: 235 x 155 x 8. Weight in Grams: 231. . 2013. 2012th Edition. paperback. . . . . Books ship from the US and Ireland. Bestandsnummer des Verkäufers V9781461430155

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This thesis details the significant progress made in improving the performance of organic transistors and the network conductivity of carbon nanotubes. The first section investigates organic semiconductor nucleation and growth on the most common dielectric surface used to fabricate organic thin film transistors. The nucleation and growth of the semiconductor was determined to be a critical factor affecting the device performance. Excellent dielectric modification layers, which promote desirable semiconductor growth leading to high conductivity were identified, and a technologically relevant deposition technique was developed to fabricate high quality dielectric modification layers over large areas. This may represent an important step towards the realization of large area organic circuity. In the final section, lessons learned from studying organic semiconductor nucleation and growth were utilized to improve the conductivity of carbon nanotube networks. Selective nucleation of materials at the junctions between nanotubes in the network significantly decreased the network's sheet resistance. The resulting networks may be promising candidates for transparent electrodes with a variety of optoelectronic applications.

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This thesis details the progress made in improving the performance of organic transistors and the network conductivity of carbon nanotubes. The first section investigates organic semiconductor nucleation and growth on the most common dielectric surface used to fabricate organic thin film transistors. In the final section, lessons learned from studying organic semiconductor nucleation and growth were utilized to improve the conductivity of carbon nanotube networks. Selective nucleation of materials at the junctions between nanotubes in the network significantly decreased the network's sheet resistance. The resulting networks may be promising candidates for transparent electrodes with a variety of optoelectronic applications.

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Titel: Investigating the Nucleation, Growth, and ...
Verlag: Springer/Sci-Tech/Trade
Erscheinungsdatum: 2013
Einband: Softcover
Zustand: New

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Ajay Virkar
ISBN 10: 1461430151 ISBN 13: 9781461430155
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Taschenbuch. Zustand: Neu. Druck auf Anfrage Neuware - Printed after ordering - This thesis details the significant progress made in improving the performance of organic transistors and the network conductivity of carbon nanotubes. The first section investigates organic semiconductor nucleation and growth on the most common dielectric surface used to fabricate organic thin film transistors. The nucleation and growth of the semiconductor was determined to be a critical factor affecting the device performance. Excellent dielectric modification layers, which promote desirable semiconductor growth leading to high conductivity were identified, and a technologically relevant deposition technique was developed to fabricate high quality dielectric modification layers over large areas. This may represent an important step towards the realization of large area organic circuity. In the final section, lessons learned from studying organic semiconductor nucleation and growth were utilized to improve the conductivity of carbon nanotube networks. Selective nucleation of materials at the junctions between nanotubes in the network significantly decreased the network's sheet resistance. The resulting networks may be promising candidates for transparent electrodes with a variety of optoelectronic applications. Artikel-Nr. 9781461430155

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Ajay Virkar
Verlag: Springer, 2013
ISBN 10: 1461430151 ISBN 13: 9781461430155
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Paperback. Zustand: Brand New. 200 pages. 9.25x6.10x0.34 inches. In Stock. Artikel-Nr. x-1461430151

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