LARGE-SCALE DEPOSITION OF GRAPHENE WITH DIELECTROPHORESIS

被引:0
|
作者
Li, Pengfei [1 ]
Lei, Nan [1 ]
Xu, Jie [1 ]
Xue, Wei [1 ]
机构
[1] Washington State Univ, Sch Engn & Comp Sci, Vancouver, WA 98686 USA
关键词
FIELD-EFFECT TRANSISTOR; CARBON NANOTUBE; SEPARATION;
D O I
暂无
中图分类号
TH [机械、仪表工业];
学科分类号
0802 ;
摘要
Graphene research has attracted enormous attention in the past few years. The handling of graphene sheets, however, has become one of the major bottlenecks in this field, especially in the development of practical devices. Here we report the investigation of large-scale deposition of graphene sheets with dielectrophoresis, a simple electrical approach using alternating current (AC) signals. For comparison purposes, we also perform the deposition of semiconducting single-walled carbon nanotubes (s-SWNTs) with the same technique. Images from scanning electron microscopy (SEM) show that the graphene flakes are successfully deposited over the "teeth"-shaped electrodes. However, the graphene deposition has a lower yield compared with the s-SWNT deposition. Both the graphene and s-SWNT based devices are subject to water rinsing after the deposition process. The current-voltage (I-V) plots before and after the rinsing steps for both devices demonstrate that the surfactants wrapping the nanomaterials can be removed by the running de-ionized water; and better electrical contacts can be formed at the interfaces of nanomaterials and electrodes. In order to further study the electrical characteristics of the deposited graphene and s-SWNTs, a standard Ag/AgCl electrode is introduced to both devices, serving as a top liquid-gate terminal. The output characteristics of both devices exhibit p-type field-effect transistor behavior. The s-SWNT based device possesses better field-effect characteristics, whereas the graphene based device has higher conductivity and more apparent metallic properties. The reported research presents an effective approach in large-scale deposition of graphene and it has great potential of paving the way for future graphene-related research and applications, especially in nanoelectronics and sensors.
引用
收藏
页码:503 / 509
页数:7
相关论文
共 50 条
  • [41] Large-Scale Arrays of Single-Layer Graphene Resonators
    van der Zande, Arend M.
    Barton, Robert A.
    Alden, Jonathan S.
    Ruiz-Vargas, Carlos S.
    Whitney, William S.
    Pham, Phi H. Q.
    Park, Jiwoong
    Parpia, Jeevak M.
    Craighead, Harold G.
    McEuen, Paul L.
    [J]. NANO LETTERS, 2010, 10 (12) : 4869 - 4873
  • [42] Large-scale preparation of thermally conductive graphene fiber filaments
    Shi, Hang
    Wang, Bo
    Wang, Lidan
    Zhang, Peijuan
    Ming, Xin
    Hao, Yuanyuan
    Lu, Jiahao
    Gao, Yue
    Gao, Weiwei
    Sun, Haiyan
    Li, Peng
    Xu, Zhen
    Liu, Yingjun
    Gao, Chao
    [J]. Carbon, 2024, 221
  • [43] Laterally Selective Oxidation of Large-Scale Graphene with Atomic Oxygen
    Kapitanova, Olesya O.
    Kataev, Elmar Yu.
    Usachov, Dmitry Yu.
    Sirotina, Anna P.
    Belova, Alina I.
    Sezen, Hikmet
    Amati, Matteo
    Al-Hada, Mohamed
    Gregoratti, Luca
    Barinov, Alexei
    Cho, Hak Dong
    Kang, Tae Won
    Panin, Gennady N.
    Vyalikh, Denis
    Itkis, Daniil M.
    Yashina, Lada V.
    [J]. JOURNAL OF PHYSICAL CHEMISTRY C, 2017, 121 (50): : 27915 - 27922
  • [44] A Large-Scale Molecular Dynamics Study of the Divacancy Defect in Graphene
    Leyssale, Jean-Marc
    Vignoles, Gerard L.
    [J]. JOURNAL OF PHYSICAL CHEMISTRY C, 2014, 118 (15): : 8200 - 8216
  • [45] Large-scale fabrication of BN tunnel barriers for graphene spintronics
    Fu, Wangyang
    Makk, Peter
    Maurand, Romain
    Braeuninger, Matthias
    Schoenenberger, Christian
    [J]. JOURNAL OF APPLIED PHYSICS, 2014, 116 (07)
  • [46] Highly efficient and large-scale synthesis of graphene by electrolytic exfoliation
    Wang, Guoxiu
    Wang, Bei
    Park, Jinsoo
    Wang, Ying
    Sun, Bing
    Yao, Jane
    [J]. CARBON, 2009, 47 (14) : 3242 - 3246
  • [47] High-throughput solution processing of large-scale graphene
    Tung V.C.
    Allen M.J.
    Yang Y.
    Kaner R.B.
    [J]. Nature Nanotechnology, 2009, 4 (1) : 25 - 29
  • [48] Scrolled Production of Large-Scale Continuous Graphene on Copper Foils*
    Zhang, Zhibin
    Qi, Jiajie
    Zhao, Mengze
    Shang, Nianze
    Cheng, Yang
    Qiao, Ruixi
    Zhang, Zhihong
    Ding, Mingchao
    Li, Xingguang
    Liu, Kehai
    Xu, Xiaozhi
    Liu, Kaihui
    Liu, Can
    Wu, Muhong
    [J]. CHINESE PHYSICS LETTERS, 2020, 37 (10)
  • [49] Electronic structure and aromaticity of large-scale hexagonal graphene nanoflakes
    Hu, Wei
    Lin, Lin
    Yang, Chao
    Yang, Jinlong
    [J]. JOURNAL OF CHEMICAL PHYSICS, 2014, 141 (21):
  • [50] Towards Large-Scale and High-Quality Graphene Films
    Yang Jinlong
    [J]. ACTA PHYSICO-CHIMICA SINICA, 2019, 35 (10) : 1043 - 1044