4.8 Article

Synthesis of Large-Area InSe Monolayers by Chemical Vapor Deposition

期刊

SMALL
卷 14, 期 39, 页码 -

出版社

WILEY-V C H VERLAG GMBH
DOI: 10.1002/smll.201802351

关键词

2D materials; chemical vapor deposition; field-effect transistor; indium selenide; monolayer

资金

  1. Ministry of Science and Technology, Taiwan [MOST106-2221-E-035-088-MY3, MOST107-2221-E-035-076-MY3, MOST104-2628-E-035-002-MY3, MOST104-2218-E-035-010, MOST107-2112-M-006-017]
  2. Ministry of Education, Taiwan
  3. JSPS-KAKENHI [JP17H06736, JP17H01069, JP15K21721, JP26102012, JP25000003]
  4. JST CREST, Japan [JPMJCR17l5]

向作者/读者索取更多资源

Recently, 2D materials of indium selenide (InSe) layers have attracted much attention from the scientific community due to their high mobility transport and fascinating physical properties. To date, reports on the synthesis of high-quality and scalable InSe atomic films are limited. Here, a synthesis of InSe atomic layers by vapor phase selenization of In2O3 in a chemical vapor deposition (CVD) system, resulting in large-area monolayer flakes or thin films, is reported. The atomic films are continuous and uniform over a large area of 1 x 1 cm(2), comprising of primarily InSe monolayers. Spectroscopic and microscopic measurements reveal the highly crystalline nature of the synthesized InSe monolayers. The ion-gel-gated field-effect transistors based on CVD InSe monolayers exhibit n-type channel behaviors, where the field effect electron mobility values can be up to approximate to 30 cm(2) V-1 s(-1) along with an on/off current ratio, of >10(4) at room temperature. In addition, the graphene can serve as a protection layer to prevent the oxidation between InSe and the ambient environment. Meanwhile, the synthesized InSe films can be transferred to arbitrary substrates, enabling the possibility of reassembly of various 2D materials into vertically stacked heterostructures, prompting research efforts to probe its characteristics and applications.

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