We found a match
Your institution may have access to this item. Find your institution then sign in to continue.
- Title
Edge‐Functionalized Nanographenes.
- Authors
Sekiya, Ryo; Haino, Takeharu
- Abstract
Nanographenes (NGs) have recently emerged as new carbon materials. Their nanoscale size results in a size‐dependent quantum confinement effect, opening the band gap by a few eV. This energy gap allows NGs to be applied as optical materials. This property has attracted researchers across multiple scientific fields. The photophysical properties of NGs can be manipulated by introducing organic groups onto their basal planes and/or into their edges. In addition, the integration of organic functional groups into NGs results in NG‐based hybrid materials. These features make the post‐synthetic modification of NGs an active research area. As obtainable information on chemically functionalized NGs is limited owing to their nonstoichiometry and structural uncertainty, their structural characterization requires a combination of multiple spectroscopic methods. Therefore, information on the characterization procedures of recently published chemically functionalized NGs is of value for advancing the field of NG‐based hybrid materials. The present review focuses on the structural characterization of chemically functionalized NGs. It is hoped that this review will help to advance this field.
- Subjects
QUANTUM confinement effects; OPTICAL materials; BAND gaps
- Publication
Chemistry - A European Journal, 2021, Vol 27, Issue 1, p187
- ISSN
0947-6539
- Publication type
Article
- DOI
10.1002/chem.202003370