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Updated: Jun 27, 2026

Preparation of a Corannulene-functionalized Hexahelicene by CopperI-catalyzed Alkyne-azide Cycloaddition of Nonplanar Polyaromatic Units
Published on: September 18, 2016
Functionalization of [C60]-Fullerene: A Recent Update.
Geoffrey Bellson Daniel1, Kiruthika Nachimuthu1, Jothi Lakshmi Nallasivam1
1Department of Chemistry, National Institute of Technology Tiruchirappalli, Tiruchirappalli, 620 015, Tamilnadu.
Fullerene functionalization yields novel fused carbo- and heterocycles with applications in reactive oxygen species (ROS) capture and organic photovoltaics. This review details synthetic strategies for these advanced fullerene materials.
Area of Science:
- Organic Chemistry
- Materials Science
- Nanotechnology
Background:
- Fullerenes possess unique structural, electronic, and photophysical properties.
- Functionalized fullerenes are vital in photochemical, biological, and nanomaterial applications.
- Fullerenes are crucial for reactive oxygen species (ROS) scavenging and organic photovoltaic cells due to electron-accepting abilities.
Purpose of the Study:
- To review synthetic strategies for [C60]-annulation reactions.
- To cover the synthesis of carbo- and heterocycles fused fullerenes.
- To focus on methodologies developed from 2014 to the present.
Main Methods:
- Review of synthetic methodologies for fullerene functionalization.
- Analysis of [C60]-annulation reactions.
- Compilation of recent advancements in fused fullerene synthesis.
Main Results:
- Various innovative synthetic strategies for fullerene functionalization have emerged.
- Successful synthesis of carbo- and heterocycles fused fullerenes.
- Demonstrated utility of functionalized fullerenes in ROS scavenging and organic photovoltaics.
Conclusions:
- Fullerene functionalization offers diverse applications.
- Advanced synthetic routes enable complex fused fullerene structures.
- Continued research promises further innovation in fullerene chemistry and applications.
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