Title : Shaping and Edge Engineering of Few-Layered Freestanding Graphene Sheets in a Transmission Electron Microscope.

Pub. Date : 2020 Apr 8

PMID : 31846340






3 Functional Relationships(s)
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1 With the use of a graphitic carbon-capped tungsten nanoelectrode as a noncontact "milling" tool in a transmission electron microscope, graphene edge atoms approached by the tool tip are locally evaporated, thus allowing a freestanding graphene sheet to be tailored with high precision and flexibility. Graphite TOR signaling pathway regulator Homo sapiens
2 With the use of a graphitic carbon-capped tungsten nanoelectrode as a noncontact "milling" tool in a transmission electron microscope, graphene edge atoms approached by the tool tip are locally evaporated, thus allowing a freestanding graphene sheet to be tailored with high precision and flexibility. Graphite TOR signaling pathway regulator Homo sapiens
3 In addition to the precise shape and size control, this tip-based method enables fabrication of graphene edges with specific chiralities, such as "armchair" or "zigzag" types. Graphite TOR signaling pathway regulator Homo sapiens