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2,1,3‐Benzothiadiazole and Derivatives: Synthesis, Properties, Reactions, and Applications in Light Technology of Small Molecules

European Journal of Organic Chemistry · 2012 · Vol. 2013(2) · pp. 228–255
Brenno A. D. NetoAlexandre A.M. LapisEufrânio N. da Silva JúniorJaı̈rton Dupont

Abstract

Abstract 2,1,3‐Benzothiadiazole (BTD) is one of the most important nuclei used in the chemistry of photoluminescent compounds and applicable for light technology. The understanding of its properties and reactions is fundamental for the design and application of these derivatives in molecular organic electronic devices and for other technologies. As a result of their potential as constituents of organic light‐emitting diodes, solar cells, liquid crystals, dyes, photovoltaic cells, and many others, attention has been focused on BTD π‐extended derivatives with potential use in this exciting area. Herein, we describe their syntheses, properties, reactions, and selected examples of applications in light technology using by BTD (small molecules) as the core.

Organic Electronics and PhotovoltaicsSynthesis and Biological EvaluationOrganic Light-Emitting Diodes ResearchChemistryMoleculeSmall moleculePhotovoltaic systemNanotechnologyOLEDCombinatorial chemistryOrganic chemistryMaterials science
Citations
318
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References
314
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References
Electron Transport Materials for Organic Light-Emitting Diodes
Chemistry of Materials · 2004 · 1,606 citations
Mimicking Photosynthetic Solar Energy Transduction
Accounts of Chemical Research · 2000 · 2,114 citations
Low bandgap polymers for photon harvesting in bulk heterojunction solar cells
Journal of Materials Chemistry · 2004 · 699 citations
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