2020
DOI: 10.1002/ange.202002508
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Spatially Resolved Bottom‐Side Fluorination of Graphene by Two‐Dimensional Substrate Patterning

Abstract: Patterned functionalization can, on the one hand, open the band gap of graphene and, on the other hand, program demanding designs on graphene. The functionalization technique is essential for graphene‐based nanoarchitectures. A new and highly efficient method was applied to obtain patterned functionalization on graphene by mild fluorination with spatially arranged AgF arrays on the structured substrate. Scanning Raman spectroscopy (SRS) and scanning electron microscopy coupled with energy‐dispersive X‐ray spec… Show more

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Cited by 7 publications
(13 citation statements)
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“…However, the lacking of the structure engineering would limit the exploitative peculiarity and application of FG. [54,65,71,[93][94][95]141,149,184,220] Therefore, the elaborate structure engineering for customizing the structure and performances of FG is the most important research point in the past several years, which is also the urgent and significant avenue in its future development. The fluorine content is the simplest and fundamental character of FG, which has been introduced in the above intrinsic properties section.…”
Section: Structure Engineeringmentioning
confidence: 99%
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“…However, the lacking of the structure engineering would limit the exploitative peculiarity and application of FG. [54,65,71,[93][94][95]141,149,184,220] Therefore, the elaborate structure engineering for customizing the structure and performances of FG is the most important research point in the past several years, which is also the urgent and significant avenue in its future development. The fluorine content is the simplest and fundamental character of FG, which has been introduced in the above intrinsic properties section.…”
Section: Structure Engineeringmentioning
confidence: 99%
“…[95] Thus, the targeted fluorination on the specified region on graphene sheet was realized, which effectively regulated the characters of the specified regions, such as surface energy, friction characteristic, electrical conductivity. [93][94][95][96] As another approach, one fluoropolymer was selected as a shielding layer to cover the surface of graphene. Subsequently, the laser was utilized and controlled to accomplish the selective radiation of the fluoropolymer.…”
Section: Microscale Structure Engineeringmentioning
confidence: 99%
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