• Optical Instruments
  • Vol. 42, Issue 4, 88 (2020)
Yuanguang CAO and Jiaxin YU*
Author Affiliations
  • School of Optical-Electrical and Computer Engineering, University of Shanghai for Science and Technology, Shanghai, 200093, China
  • show less
    DOI: 10.3969/j.issn.1005-5630.2020.04.014 Cite this Article
    Yuanguang CAO, Jiaxin YU. Preparation of monolayer tungsten selenide film by trolley based chemical vapor deposition method[J]. Optical Instruments, 2020, 42(4): 88 Copy Citation Text show less
    References

    [1] NOVOSELOV K S, GEIM A K, MOROZOV S V. Electric field effect in atomically thin carbon films[J]. Science, 306, 666-669(2004).

    [2] SUN Z H, CHANG H X. Graphene and graphene-like two-dimensional materials in photodetection: mechanisms and methodology[J]. ACS Nano, 8, 4133-4156(2014).

    [3] CHEN Y, TAN C L, ZHANG H. Two-dimensional graphene analogues for biomedical applications[J]. Chemical Society Reviews, 44, 2681-2701(2015).

    [4] CUI S M, PU H H, WELLS S A. Ultrahigh sensitivity and layer-dependent sensing performance of phosphorene-based gas sensors[J]. Nature Communications, 6, 8632(2015).

    [5] PAK Y, LIM N, KUMARESAN Y. Palladium nanoribbon array for fast hydrogen gas sensing with ultrahigh sensitivity[J]. Advanced Materials, 27, 6945-6952(2015).

    [6] WANG Q H, KALANTAR-ZADEH K, KIS A. Electronics and optoelectronics of two-dimensional transition metal dichalcogenides[J]. Nature Nanotechnology, 7, 699-712(2012).

    [7] KOPPENS F H L, MUELLER T, AVOURIS P. Photodetectors based on graphene, other two-dimensional materials and hybrid systems[J]. Nature Nanotechnology, 9, 780-793(2014).

    [8] LEE Y H, ZHANG X Q, ZHANG W J. Synthesis of large-area MoS2 atomic layers with chemical vapor deposition[J]. Advanced Materials, 24, 2320-2325(2012).

    [9] LIU W, KANG J H, SARKAR D. Role of metal contacts in designing high-performance monolayer n-type WSe2 field effect transistors[J]. Nano Letters, 13, 1983-1990(2013).

    [11] GEIM A K, NOVOSELOV K S. The rise of graphene[J]. Nature Materials, 6, 183-191(2007).

    [12] COLEMAN J N, LOTYA M, O’NEILL A. Two-dimensional nanosheets produced by liquid exfoliation of layered materials[J]. Science, 331, 568-571(2011).

    [13] HUANG J K, PU J, HSU C L. Large-area synthesis of highly crystalline WSe2 monolayers and device applications[J]. ACS Nano, 8, 923-930(2014).

    [14] CLARK G, WU S F, RIVERA P. Vapor-transport growth of high optical quality WSe2 monolayers[J]. APL Materials, 2, 101101(2014).

    [15] ARORA A, NOGAJEWSKI K, MOLAS M. Exciton band structure in layered MoSe2: from a monolayer to the bulk limit[J]. Nanoscale, 7, 20769-20775(2015).

    [16] LI H, LU G, WANG Y L. Mechanical exfoliation and characterization of single-and few-layer nanosheets of WSe2, TaS2, and TaSe2[J]. Small, 9, 1974-1981(2013).

    [17] SHTANSKY D V, SHEVEYKO A N, SOROKIN D I. Structure and properties of multi-component and multilayer TiCrBN/WSex coatings deposited by sputtering of TiCrB and WSe2 targets[J]. Surface and Coatings Technology, 202, 5953-5961(2008).

    [18] FANG H, CHUANG S, CHANG T C. High-performance single layered WSe2 p-FETs with chemically doped contacts[J]. Nano Letters, 12, 3788-3792(2012).

    Yuanguang CAO, Jiaxin YU. Preparation of monolayer tungsten selenide film by trolley based chemical vapor deposition method[J]. Optical Instruments, 2020, 42(4): 88
    Download Citation