Tailoring the edges of graphene quantum dots to establish localized π-π interactions with aromatic molecules

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Abstract

We report a simple route combining bottom-up and top-down strategies for the synthesis of partially ring-terminated graphene quantum dots (GQDs) employing aniline for modifying the molecular structure of GQD edges. In contrast to the GQDs synthesized without introducing ring-terminals by aniline conjugation, the photoluminescence of such partially ring-terminated GQDs can be quenched by the aromatic molecules owing to the edge-localized π-π interactions. This study provides a generalizable strategy in functionalizing GQDs towards aromatic molecule sensors, as well as important insight to the effect of edge-localized π-π interaction in perturbing the electronic structure of GQDs.

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Wang, S., Lemon, Z., Cole, I. S., & Li, Q. (2015). Tailoring the edges of graphene quantum dots to establish localized π-π interactions with aromatic molecules. RSC Advances, 5(51), 41248–41254. https://doi.org/10.1039/c5ra04927j

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