Noncovalent functionalization, exfoliation, and solubilization of graphene in water by employing a fluorescent coronene carboxylate
Single‐layer graphene stabilization: An efficient methodology to make stable aqueous
solutions of single‐layer graphene has been demonstrated by exploiting charge‐transfer
interactions with a coronene tetracarboxylate acceptor molecule (see figure). Microscopic
studies reveal exfoliation of few‐layer graphene and selective stabilization of single‐layer
graphene in large quantities.
solutions of single‐layer graphene has been demonstrated by exploiting charge‐transfer
interactions with a coronene tetracarboxylate acceptor molecule (see figure). Microscopic
studies reveal exfoliation of few‐layer graphene and selective stabilization of single‐layer
graphene in large quantities.
Single‐layer graphene stabilization: An efficient methodology to make stable aqueous solutions of single‐layer graphene has been demonstrated by exploiting charge‐transfer interactions with a coronene tetracarboxylate acceptor molecule (see figure). Microscopic studies reveal exfoliation of few‐layer graphene and selective stabilization of single‐layer graphene in large quantities.
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