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Die räumlich aufgelöste kovalente Strukturierung von Graphen wurde durch die Anwendung dreier Reaktionsprinzipien erreicht: reduktive Aktivierung des Kohlenstoffgitters, antaratopische Bindung sowie klassische Lithographie. Wie A. Hirsch et al. in ihrer Zuschrift auf S. 5651 zeigen, ermöglicht die reversible Defunktionalisierung des strukturierten Graphens die Speicherung chemischer Information, wobei...
Patterned graphene‐functionalization with a tunable degree of functionalization can tailor the properties of graphene. Here, we present a new reductive functionalization approach combined with lithography rendering patterned graphene‐functionalization easily accessible. Two types of covalent patterning of graphene were prepared and their structures were unambiguously characterized by statistical Raman...
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