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A non-destructive n-doping method for graphene with precise control of electronic properties via atomic layer deposition.
Han, Kyu Seok; Kalode, Pranav Y; Koo Lee, Yong-Eun; Kim, Hongbum; Lee, Lynn; Sung, Myung Mo.
Affiliation
  • Han KS; Department of Chemistry, Hanyang University, Seoul, Republic of Korea. smm@hanyang.ac.kr.
  • Kalode PY; Department of Chemistry, Hanyang University, Seoul, Republic of Korea. smm@hanyang.ac.kr.
  • Koo Lee YE; Department of Chemistry, Hanyang University, Seoul, Republic of Korea. smm@hanyang.ac.kr.
  • Kim H; Department of Chemistry, Hanyang University, Seoul, Republic of Korea. smm@hanyang.ac.kr.
  • Lee L; Department of Chemistry, Hanyang University, Seoul, Republic of Korea. smm@hanyang.ac.kr.
  • Sung MM; Department of Chemistry, Hanyang University, Seoul, Republic of Korea. smm@hanyang.ac.kr.
Nanoscale ; 8(9): 5000-5, 2016 Mar 07.
Article in En | MEDLINE | ID: mdl-26864992
Graphene applications require high precision control of the Fermi level and carrier concentration via a nondestructive doping method. Here, we develop an effective n-doping technique using atomic layer deposition (ALD) of ZnO thin films on graphene through a reactive molecular layer. This ALD doping method is nondestructive, simple, and precise. The ZnO thin films on graphene are uniform, conformal, of good quality with a low density of pinholes, and finely tunable in thickness with 1 Å resolution. We demonstrate graphene transistor control in terms of the Dirac point, carrier density, and doping state as a function of the ZnO thickness. Moreover, ZnO functions as an effective thin-film barrier against air-borne water and oxygen on the graphene, resulting in extraordinary stability in air for graphene devices. ZnO ALD was also applied to other two-dimensional materials including MoS2 and WSe2, which substantially enhanced electron mobility.

Full text: 1 Collection: 01-internacional Database: MEDLINE Language: En Journal: Nanoscale Year: 2016 Document type: Article Country of publication: United kingdom

Full text: 1 Collection: 01-internacional Database: MEDLINE Language: En Journal: Nanoscale Year: 2016 Document type: Article Country of publication: United kingdom