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The (Non-)Local Density of States of Electronic Excitations in Organic Semiconductors




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Dettagli

Genere:Libro
Lingua: Inglese
Editore:

Springer

Pubblicazione: 11/2017
Edizione: 1st ed. 2018





Trama

This book focuses on the microscopic understanding of the function of organic semiconductors. By tracing the link between their morphological structure and electronic properties across multiple scales, it represents an important advance in this direction. 

Organic semiconductors are materials at the interface between hard and soft matter: they combine structural variability, processibility and mechanical flexibility with the ability to efficiently transport charge and energy. This unique set of properties makes them a promising class of materials for electronic devices, including organic solar cells and light-emitting diodes. Understanding their function at the microscopic scale – the goal of this work – is a prerequisite for the rational design and optimization of the underlying materials. Based on new multiscale simulation protocols, the book studies the complex interplay between molecular architecture, supramolecular organization and electronic structure in order to reveal why some materials perform well – and why others do not. In particular, by examining the long-range effects that interrelate microscopic states and mesoscopic structure in these materials, the book provides qualitative and quantitative insights into e.g. the charge-generation process, which also serve as a basis for new optimization strategies.





Sommario

Organic Electronics in a Nutshell.- Particle-Based Models.- Long-Range Polarized Embedding  of Electronic Excitations.- Charge Carriers at Organic–Organic Interfaces.- Charge Carriers in Disordered Bulk Mesophases.- Charge Transfer States at Donor–Acceptor Heterojunctions.- Conclusions & Outlook.










Altre Informazioni

ISBN:

9783319695983

Condizione: Nuovo
Collana: Springer Theses
Dimensioni: 235 x 155 mm Ø 3495 gr
Formato: Copertina rigida
Illustration Notes:XIV, 133 p. 42 illus. in color.
Pagine Arabe: 133
Pagine Romane: xiv


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