Electrical and Structural Characterization of Few-Layer Graphene Sheets on Quartz

被引:0
|
作者
Aimaganbetov, Kazybek [1 ]
Almas, Nurlan [2 ]
Kurbanova, Bayan [3 ]
Muratov, Dauren [1 ]
Serikkanov, Abay [1 ]
Insepov, Zinetula [3 ,4 ]
Tokmoldin, Nurlan [5 ]
机构
[1] Satbayev Univ, Inst Phys & Technol, Alma Ata 050032, Kazakhstan
[2] Astana IT Univ, Dept Sci & Innovat, Nur Sultan 010000, Kazakhstan
[3] Nazarbayev Univ, Sch Sci & Humanities, Dept Phys, Nur Sultan 010000, Kazakhstan
[4] Purdue Univ, Sch Nucl Engn, 400 Cent Dr, W Lafayette, IN 47907 USA
[5] Univ Potsdam, Inst Phys & Astron, D-14476 Potsdam, Germany
关键词
few-layer graphene; Raman spectroscopy; Hall effect; admittance; scanning electron microscopy; CVD GRAPHENE; FILMS; TRANSPARENT; SUBSTRATE; CARBON;
D O I
10.3390/ma15155330
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
Despite the impressive performance and incredible promise for a variety of applications, the wide-scale commercialization of graphene is still behind its full potential. One of the main challenges is related to preserving graphene's unique properties upon transfer onto practically desirable substrates. In this work, few-layer graphene sheets deposited via liquid-phase transfer from copper onto a quartz substrate have been studied using a suite of experimental techniques, including scanning electron microscopy (SEM), Raman spectroscopy, admittance spectroscopy, and four-point probe electrical measurements. SEM measurements suggest that the transfer of graphene from copper foil to quartz using the aqueous solution of ammonium persulfate was accompanied by unintentional etching of the entire surface of the quartz substrate and, as a result, the formation of microscopic facet structures covering the etched surface of the substrate. As revealed by Raman spectroscopy and the electrical measurements, the transfer process involving the etching of the copper foil in a 0.1 M solution of (NH4)(2)S2O8 resulted in its p-type doping. This was accompanied by the appearance of an electronic gap of 0.022 eV, as evidenced by the Arrhenius analysis. The observed increase in the conductance of the samples with temperature can be explained by thermally activated carrier transport, dominating the scattering processes.
引用
收藏
页数:10
相关论文
共 50 条
  • [1] Vibration isolation of few-layer graphene sheets
    Lu, Lu
    Ru, C. Q.
    Guo, Xingming
    [J]. INTERNATIONAL JOURNAL OF SOLIDS AND STRUCTURES, 2020, 185 : 78 - 88
  • [2] Preparation and characterization of graphene and few-layer graphene
    Feng Ying
    Huang Shi-hua
    Kang Kai
    Duan Xiao-xia
    [J]. NEW CARBON MATERIALS, 2011, 26 (01) : 26 - 30
  • [3] Preparation and characterization of graphene and few-layer graphene
    Feng, Ying
    Huang, Shi-Hua
    Kang, Kai
    Duan, Xiao-Xia
    [J]. Xinxing Tan Cailiao/New Carbon Materials, 2011, 26 (01): : 26 - 30
  • [4] Fabrication and characterization of few-layer graphene
    Zhang, Hongxin
    Feng, Peter X.
    [J]. CARBON, 2010, 48 (02) : 359 - 364
  • [5] Flake Electrical Conductivity of Few-Layer Graphene
    Mousavi, Hamze
    Khodadadi, Jabbar
    [J]. SCIENTIFIC WORLD JOURNAL, 2014,
  • [6] Structural Distortions in Few-Layer Graphene Creases
    Robertson, Alex W.
    Bachmatiuk, Alicja
    Wu, Yimin A.
    Schaeffel, Franziska
    Buechner, Bernd
    Ruemmeli, Mark H.
    Warner, Jamie H.
    [J]. ACS NANO, 2011, 5 (12) : 9984 - 9991
  • [7] Metamaterial Vibration of Tensioned Circular Few-Layer Graphene Sheets
    Lu, Lu
    Ru, C. Q.
    Guo, Xingming
    [J]. JOURNAL OF APPLIED MECHANICS-TRANSACTIONS OF THE ASME, 2020, 87 (06):
  • [8] Uncertainty propagation in the buckling behavior of few-layer graphene sheets
    Ghanipour, A. R.
    Ghavanloo, E.
    Fazelzadeh, S. A.
    Pouresmaeeli, S.
    [J]. MICROSYSTEM TECHNOLOGIES-MICRO-AND NANOSYSTEMS-INFORMATION STORAGE AND PROCESSING SYSTEMS, 2018, 24 (02): : 1167 - 1177
  • [9] Uncertainty propagation in the buckling behavior of few-layer graphene sheets
    A. R. Ghanipour
    E. Ghavanloo
    S. A. Fazelzadeh
    S. Pouresmaeeli
    [J]. Microsystem Technologies, 2018, 24 : 1167 - 1177
  • [10] Hydrothermally grown ZnO nanostructures on few-layer graphene sheets
    Kim, Yong-Jin
    Hadiyawarman
    Yoon, Aram
    Kim, Miyoung
    Yi, Gyu-Chul
    Liu, Chunli
    [J]. NANOTECHNOLOGY, 2011, 22 (24)