Meng | Organic Electronics for Electrochromic Materials and Devices | Buch | 978-3-527-34871-8 | www.sack.de

Buch, Englisch, 528 Seiten, Format (B × H): 170 mm x 244 mm, Gewicht: 1134 g

Meng

Organic Electronics for Electrochromic Materials and Devices


1. Auflage 2021
ISBN: 978-3-527-34871-8
Verlag: WILEY-VCH

Buch, Englisch, 528 Seiten, Format (B × H): 170 mm x 244 mm, Gewicht: 1134 g

ISBN: 978-3-527-34871-8
Verlag: WILEY-VCH


Organic Electronics for Electrochromic Materials and Devices

Explore this comprehensive overview of organic electrochromic materials and devices from a leading voice in the industry
Organic Electronics for Electrochromic Materials and Devices delivers a complete discussion of the major and key topics related to the phenomenon of electrochromism. The text covers the history of organic electrochromism, its fundamental principles, different types of electrochromic materials, the development of device structures and multi-function devices, characterizations of device performance, modern applications of electrochromic devices, and prospects for future electrochromic devices.
The distinguished author places a strong focus on recent research results from universities and private firms from around the world and addresses the issues and challenges faced by those who apply organic electrochromic technology in the real world. With these devices quickly becoming the go-to display technology in the field of electronic information, this resource will quickly become indispensable to all who work or study in the field of optics.
Readers will also benefit from the inclusion of: - A thorough introduction to organic electrochromism, including its history and the mechanisms of electrochromic devices
- An exploration of polymer electrolytes for electrochromic applications, including their requirements and types
- A discussion of electrochromic small molecules, including the development of technology in viologen materials, fluoran and fluorescein dyes, violene-cyanine hybrids, triarylamine molecules and liquid crystal electrochromic materials.
- A perspective analysis of the redox-active conjugated polymers and triarylamine based non-conjugated polymers applied in electrochromic devices
- A treatment of Prussian blue and metallohexacyanates, including their backgrounds, technology development, crystal structures, synthesis, nanocomposites, and assembled electrochromic devices

Perfect for materials scientists, polymer chemists, organic chemists, physical chemists, and inorganic chemists, Organic Electronics for Electrochromic Materials and Devices will also earn a place in the libraries of physicists and those who work in the optical industry who seek a one-stop reference that covers all aspects of organic electrochromic materials.

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Autoren/Hrsg.


Weitere Infos & Material


INTRODUCTION OF ORGANIC ELECTROCHROMISM
General Introduction
History of Electrochromism
The Key Parameters of Electrochromism
Conclusion
 
ADVANCES IN POLYMER ELECTROLYTES FOR ELECTROCHROMIC APPLICATION
Introduction
Requirements of Polymer Electrolytes in Electrochromic Applications
Types of Polymer Electrolytes
Conclusions
 
ELECTROCHROMIC SMALL MOLECULES
Background of Small Molecule Electrochromic
Technology Development of CP
Violene-cyanine Hybrids(AIE PL OEC)
Terephthalate Derivatives(Multi-color OEC)
Isophthalate Derivatives
Methyl Ketone Derivatives
Diphenylacetylenes
Fluoran Dye Derivatives
pH-Responsive Molecules Derivatives
TPA Dye Derivatives
Hydrocarbon Derivatives-NIR-OEC
 
VIOLOGEN EC
The Introduction of OEC and Viologen
Different Structures of Amethyst Electrochromic Materials
Viologen Electrochromic Device
Companies Operating in the Field of Viologen Electrochromism
Conclusions
 
PRUSSIAN BLUE AND METALLOHEXACYANATES
Background
Technology Development of PB
Crystal structure
Electrochromic Mechanism
Synthesis
Assembled Electrochromic Devices (ECDs)
Nanocompsites
PB analogues
Electrochromic & Multi-applications
 
CONJUGATED ELECTROCHROMIC POLYMERS
Introduction
Poly(thiophene)-Based Conjugated Electrochromic Polymers
Poly(pyrrole)-Based Conjugated Electrochromic Polymers
Polycarbazole-Based Conjugated Electrochromic Polymers
 
TPA-PI/PA BASED CONJUGATED/NON-CONJUGATED ELECTROCHROMIC POLYMERS
Introduction
Development of TA-based Electrochromic Polyimides and Polyamides
Conclusions
 
METALLO-SUPERMOLECULAR POLYMERS
Introduction
Single Metallic System
Hetero-Metallic System.
The Fabrication Method of Metallopolymer film
Conclusion
 
METAL ORGANIC FRAMEWORK (MOFS) / COVALENT ORGANIC FRAMEWORK (COFS) BASED EC
Introduction
Current Studies in EC MOFs
Current studies in EC COFs
Conclusion and Prospect
 
NANOSTRUCTURED ELECTROCHROMIC MATERIALS
Introduction
Current Studies of Nanostructure in Electrochromism
Conclusion and Prospect
 
METAL ORGANIC FRAMEWORK (MOF) BASED EC
Introduction
Current studies in EC MOFs
Conclusion and Prospect
 
ORGANIC ELECTROLUMINOCHROMIC MATERIALS
Introduction
Conventional Mechanisms of Electroluminochromism
Electroluminochromic Performance Parameters
Classical Materials
Future Perspectives and Conclusion
 
ORGANIC PHOTOELECTROCHROMIC DEVICES
Introduction
Structure Design of PECDs
Future Perspectives and Conclusion
 
APPLICATION OF OEC DEVICES
Smart Window
Dimmable Rearview Mirror
Sensors
The Application of Electrochromic Device in Display
 
COMMERCIALIZED OEC MATERIALS AND RELATED ANALYSIS OF COMPANY PATENTS
General Introduction
Gentex Corporation
Ricoh Company, Ltd
Canon Inc.
BOE Technology Group Co., Ltd. and OPPO Guangdong Mobile Communications Co., Ltd.
Other Important Enterprises
Conclusion
 
MAIN CHALLENGES FOR THE COMMERCIALIZATION OF OEC
The Long-term Stability of OEC Materials
The Mechanical Stability of OEC Devices (Encapsulation Technology)
Large-Area Process Technology: Spray Coating and Roll-to-Roll Processes
Conclusions and Perspective


Hong Meng, PhD, works in the School of Advanced Materials in the Shenzhen Graduate School at Peking University in Shenzhen, China. He obtained his doctorate from the University of California, Los Angeles in 2002.



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