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|a QD478 .N366 2010
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|a 621.381
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|a UAMI
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|a Iwamoto, Mitsumasa.
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|a Nanoscale Interface for Organic Electronics.
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|a Singapore :
|b World Scientific,
|c 2010.
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|a 1 online resource (400 pages)
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|a text
|b txt
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|a PREFACE; CONTENTS; Part 1 Nanoscale Interface; CHAPTER 1 INTRODUCTION TO NANOSCALE INTERFACE; CHAPTER 2 ANALYSIS OF CONTACT RESISTANCE AND SPACE-CHARGE EFFECTS IN ORGANIC FIELD-EFFECT TRANSISTORS; CHAPTER 3 INTERFACE CONTROL OF VERTICAL-TYPE ORGANIC TRANSISTORS; CHAPTER 4 ELECTROCHEMICAL PROPERTIES OF SELF-ASSEMBLED VIOLOGEN DERIVATIVE AND ITS APPLICATION TO HYDROGEN PEROXIDE DETECTING SENSOR; CHAPTER 5 ZINC (II), IRIDIUM (III) AND TIN (IV) COMPLEXES FOR NANOSCALE OLED DEVICES; CHAPTER 6 STRUCTURE OPTIMIZATION FOR HIGH EFFICIENCY WHITE ORGANIC LIGHT-EMITTING DIODES.
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|a Part 2 Molecular ElectronicsCHAPTER 7 STATISTICAL ANALYSIS OF ELECTRONIC TRANSPORT PROPERTIES OF ALKANETHIOL MOLECULAR JUNCTIONS; CHAPTER 8 A HYSTERIC CURRENT/VOLTAGE RESPONSE OF REDOX-ACTIVE RUTHENIUM COMPLEX MOLECULES IN SELF-ASSEMBLED MONOLAYERS; CHAPTER 9 CHARACTERISTICS OF CHARGE TRANSPORT AND ELECTRIC CONDUCTION IN VIOLOGEN SELF-ASSEMBLED MONOLAYERS; CHAPTER 10 TIME-AVERAGED DEUTERIUM NMR STUDIES OF THE DYNAMIC PROPERTIES FOR A LOW MOLAR MASS NEMATIC; CHAPTER 11 TRAINING AND FATIGUE OF CONDUCTING POLYMER ARTIFICIAL MUSCLES; Part 3 Polymer Electronics.
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|a CHAPTER 12 SURFACE PLASMON EXCITATIONS AND EMISSION LIGHTS IN NANOSTRUCTURED ORGANIC FILMSCHAPTER 13 MORPHOLOGY CONTROL OF NANOSTRUCTURED CONJUGATED POLYMER FILMS; CHAPTER 14 WAY OF ROLL-TO-ROLL PRINTED 13.56 MHzOPERATED RFID TAGS; CHAPTER 15 PHYSICAL VAPOR DEPOSITION OF POLYMER THIN FILMS AND ITS APPLICATION TO ORGANIC DEVICES; CHAPTER 16 NANOSCALE BIOELECTRONIC DEVICE CONSISTING OF BIOMOLECULES.
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|a The scope of this book will be focused on the interface issues and problems in organic materials as electronic device applications. The organic material electronics is a rapidly progressing field for potential applications in flexible field effect transistors, plastic solar cells, organic luminescent devices, etc. However, the performance of these organic devices is still not sufficient. To enhance the understanding and practical applications of organic devices, we need to understand the fundamental organic device physics which is somewhat different from the conventional inorganic device physi.
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|a Print version record.
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|a ProQuest Ebook Central
|b Ebook Central Academic Complete
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|a Nanoscience.
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|a Organic electronics.
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|a Nanosciences.
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|a Électronique organique.
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|a Nanoscience
|2 fast
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|a Organic electronics
|2 fast
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|a Kwon, Young-Soo.
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|a Lee, Takhee.
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|i has work:
|a Nanoscale Interface for Organic Electronics (Text)
|1 https://id.oclc.org/worldcat/entity/E39PD3P7jwKtXkMw3FYH6V7t6q
|4 https://id.oclc.org/worldcat/ontology/hasWork
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0 |
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|i Print version:
|a Iwamoto, Mitsumasa.
|t Nanoscale Interface for Organic Electronics.
|d Singapore : World Scientific, ©2010
|z 9789814322485
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856 |
4 |
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|u https://ebookcentral.uam.elogim.com/lib/uam-ebooks/detail.action?docID=731073
|z Texto completo
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938 |
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|a Askews and Holts Library Services
|b ASKH
|n AH24686645
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|a EBL - Ebook Library
|b EBLB
|n EBL731073
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|a 92
|b IZTAP
|