Organic Semiconductor Heterojunctions and Its Application in Organic Light-Emitting Diodes Organic Semiconductor Heterojunctions and Its Application in Organic Light-Emitting Diodes
Springer Series in Materials Science

Organic Semiconductor Heterojunctions and Its Application in Organic Light-Emitting Diodes

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Descripción editorial

This book systematically introduces the most important aspects of organic semiconductor heterojunctions, including the basic concepts and electrical properties. It comprehensively discusses the application of organic semiconductor heterojunctions as charge injectors and charge generation layers in organic light-emitting diodes (OLEDs). Semiconductor heterojunctions are the basis for constructing high-performance optoelectronic devices. In recent decades, organic semiconductors have been increasingly used to fabricate heterojunction devices, especially in OLEDs, and the subject has attracted a great deal of attention and evoked many new phenomena and interpretations in the field. This important application is based on the low dielectric constant of organic semiconductors and the weak non-covalent electronic interactions between them, which means that they easily form accumulation heterojunctions. As we know, the accumulation-type space charge region is highly conductive, which is animportant property for highly efficient charge generation in their application as charge injector and charge generation layer in OLEDs. This book serves as a valuable reference for researchers and as a textbook for graduate students focusing on the study and development of OLED for display and lighting.

GÉNERO
Ciencia y naturaleza
PUBLICADO
2017
21 de septiembre
IDIOMA
EN
Inglés
EXTENSIÓN
161
Páginas
EDITORIAL
Springer Berlin Heidelberg
VENDEDOR
Springer Nature B.V.
TAMAÑO
5.6
MB

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