Optoelectronic Organic-Inorganic Semiconductor Heterojunctions

Optoelectronic Organic-Inorganic Semiconductor Heterojunctions
Title Optoelectronic Organic-Inorganic Semiconductor Heterojunctions PDF eBook
Author Ye Zhou
Publisher CRC Press
Total Pages 382
Release 2021-01-19
Genre Technology & Engineering
ISBN 1000325717

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Optoelectronic Organic-Inorganic Semiconductor Heterojunctions summarizes advances in the development of organic-inorganic semiconductor heterojunctions, points out challenges and possible solutions for material/device design, and evaluates prospects for commercial applications. Introduces the concept and basic mechanism of semiconductor heterojunctions Describes a series of organic-inorganic semiconductor heterojunctions with desirable electrical and optical properties for optoelectronic devices Discusses typical devices such as solar cells, photo-detectors, and optoelectronic memories Outlines the materials and device challenges as well as possible strategies to promote the commercial translation of semiconductor heterojunctions-based optoelectronic devices Aimed at graduate students and researchers working in solid-state materials and electronics, this book offers a comprehensive yet accessible view of the state of the art and future directions.

Hybrid Organic on Inorganic Semiconductor Heterojunction

Hybrid Organic on Inorganic Semiconductor Heterojunction
Title Hybrid Organic on Inorganic Semiconductor Heterojunction PDF eBook
Author Chih-Hsien Chen
Publisher
Total Pages 230
Release 2006
Genre
ISBN

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"Hybrid organic on inorganic semiconductor heterojunctions with a sandwich structure have been fabricated and studied using conjugated polymers. The inorganic semiconductor was n-type silicon substrate. The conjugated polymers used in this work include poly(2-methoxy-5-(2-ethylhexyloxy)-1,4-phenylenevinylene) containing polyhedral oligomeric silsesquioxanes (MEH-PPV POSS), regioregular poly(3-hexylthiophene) (RR-P3HT) and poly(3,4-ethylenedioxythiophene) (PEDOT)." --

Organic Optoelectronics

Organic Optoelectronics
Title Organic Optoelectronics PDF eBook
Author Wenping Hu
Publisher John Wiley & Sons
Total Pages 503
Release 2012-11-05
Genre Technology & Engineering
ISBN 3527653473

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Written by internationally recognized experts in the field with academic as well as industrial experience, this book concisely yet systematically covers all aspects of the topic. The monograph focuses on the optoelectronic behavior of organic solids and their application in new optoelectronic devices. It covers organic field-effect and organic electroluminescent materials and devices, organic photonics, materials and devices, as well as organic solids in photo absorption and energy conversion. Much emphasis is laid on the preparation of functional materials and the fabrication of devices, from materials synthesis and purification, to physicochemical properties and the basic processes and working principles of the devices. The only book to cover fundamentals, applications, and the latest research results, this is a handy reference for both researchers and those new to the field. From the contents: * Electronic process in organic solids * Organic/polymeric semiconductors for field-effect transistors * Organic/polymeric field-effect transistors * Organic circuits and organic single molecular transistors * Polymer light-emitting Diodes (PLEDs): devices and materials * Organic solids for photonics * Organic photonic devices * Organic solar cells based on small molecules * Polymer solar cells * Dye-sensitized solar cells (DSSCs) * Organic thermoelectric power devices

Semiconductor Heterojunctions

Semiconductor Heterojunctions
Title Semiconductor Heterojunctions PDF eBook
Author B. L. Sharma
Publisher Pergamon
Total Pages 232
Release 1974
Genre Technology & Engineering
ISBN

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Advances in Nanostructured Materials

Advances in Nanostructured Materials
Title Advances in Nanostructured Materials PDF eBook
Author Bibhu Prasad Swain
Publisher Springer Nature
Total Pages 439
Release 2022-03-30
Genre Technology & Engineering
ISBN 9811683913

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This book presents recent advances in nanostructured materials. It describes the characterization of nanomaterials, their preparation methods and performance testing techniques; the design and development of nano-scale devices; and the applications of nanomaterials, with examples taken from different industries, such as energy, bioengineering and medicine. The book is broadly divided into sections such as nanostructure semiconductor materials for device applications, nanostructured ferroelectric and ferromagnetic materials.. The topics covered include experimental approaches of device fabrication, photovoltaics and supercapacitors applications, etc. Given the contents, the book will be useful for students, researchers, and professionals working in the area of nanotechnology and nanomaterials.

Optoelectronic Properties of Inorganic Compounds

Optoelectronic Properties of Inorganic Compounds
Title Optoelectronic Properties of Inorganic Compounds PDF eBook
Author D. Max Roundhill
Publisher Springer Science & Business Media
Total Pages 422
Release 2013-03-09
Genre Science
ISBN 1475761015

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This book is intended to offer the reader a snapshot of the field of optoelectronic materials from the viewpoint of inorganic chemists. The field of inorganic chemistry is transforming from one focused on the synthesis of compounds having interesting coordination numbers, structures, and stereochemistries, to one focused on preparing compounds that have potentially useful practical applica tions. Two such applications are in the area of optics and electronics. These are fields where the use of inorganic materials has a long history. As the field of microelectronics develops the demands on the performance of such materials increases, and it becomes necessary to discover compounds that will meet these demands. The field of optoelectronics represents a merging of the two disciplines. Its emergence is a natural one because many of the applications involve both of these properties, and also because the electronic structure of a metal compound that confers novel optical properties is often one that also influences its electron transfer and conductivity characteristics. Two of the more important growth areas that have led to these developments are communications and medicine. Within the communications field there is the microelectronics that is involved in information storage and transmittal, some of which will be transferred into the optical regime. Within the medical field there are chemical probes that transmit analytical information from an in vivo environment. This information needs to be readily accessible from an external site, and then quickly converted into images or data that yield accurate and inexpensive diagnoses.

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

Organic Semiconductor Heterojunctions and Its Application in Organic Light-Emitting Diodes
Title Organic Semiconductor Heterojunctions and Its Application in Organic Light-Emitting Diodes PDF eBook
Author Dongge Ma
Publisher Springer
Total Pages 153
Release 2017-09-21
Genre Science
ISBN 3662536951

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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 an important 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.