Electron-poor arylenediimides
Author:
Affiliation:
1. Supramolecular and Material Chemistry Lab
2. School of Physical Sciences
3. Jawaharlal Nehru University
4. New Delhi 110067
5. India
Abstract
This review article highlights the emergence of eclectic molecular design principles to realize remarkably strong electron deficient arylenediimide molecules, aspects of their stability and associated applications.
Publisher
Royal Society of Chemistry (RSC)
Subject
Organic Chemistry
Link
http://pubs.rsc.org/en/content/articlepdf/2018/QO/C8QO00256H
Reference178 articles.
1. Core-Substituted Naphthalenediimides: LUMO Levels Revisited, in Comparison with Preylenediimides with Sulfur Redox Switches in the Core
2. Taming Hot CF3Radicals: Incrementally Tuned Families of Polyarene Electron Acceptors for Air-Stable Molecular Optoelectronics
3. Extending the Scope of a New Cyanation: Design and Synthesis of an Anthracene Derivative with an Exceptionally Low LUMO Level and Improved Solubility
4. Plastic Solar Cells
5. Interfacial modification to improve inverted polymer solar cells
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