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Lee, Chang Young
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Alkalide-Assisted Direct Electron Injection for the Noninvasive n-Type Doping of Graphene

Author(s)
Park, SanghwanLee, Chang Young
Issued Date
2024-03-07
URI
https://scholarworks.unist.ac.kr/handle/201301/85651
Citation
The 66th Fullerenes-Nanotubes-Graphene General Symposium
Abstract
Although the doping of graphene grown by chemical vapor deposition is crucial in graphene-based electronics, noninvasive methods of n-type doping have not been widely investigated in comparison with p-type doping methods. We developed a convenient and robust method for the noninvasive n-type doping of graphene, wherein electrons are directly injected from sodium anions into the graphene. This method involves immersing the graphene in solutions of [K(15-crown-5)2]Na prepared by dissolving a sodium-potassium (NaK) alloy in a 15-crown-5 solution. The n-type doping of graphene was confirmed by downshifted G and 2D bands in Raman spectra and by the Dirac point shifting to a negative voltage. The electron-injected graphene showed no sign of structural damage, exhibited higher carrier mobilities than that of pristine graphene, and remained n-doped for over a month of storage in air. In addition, we demonstrated that electron injection enhances noncovalent interactions between graphene and metallomacrocycle molecules without requiring a linker, as used in previous studies, suggesting several potential applications of the method in modifying graphene with various functionalities.
Publisher
Fullerenes, Nanotubes and Graphene Research Society

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