Graphene Oxide-Assisted Liquid Phase Exfoliation of Graphite into Graphene for Highly Conductive Film and Electromechanical Sensors

被引:99
作者
Tran Thanh Tung [1 ]
Yock, Jeongha [1 ]
Alotaibi, Faisal K. [1 ]
Nine, Md J. [1 ]
Karunagaran, Ramesh [1 ]
Krebsz, Melinda [1 ]
Nguyen, Giang T. [1 ]
Tran, Diana N. H. [1 ]
Feller, Jean-Francois [2 ]
Losic, Dusan [1 ]
机构
[1] Univ Adelaide, Sch Chem Engn, Adelaide, NT 5005, Australia
[2] Bretagne Loire Univ UBL, IRDL CNRS UBS 3744, Smart Plast Grp, F-56100 Lorient, France
关键词
graphene; exfoliation; conductive film; electronic devices; wearable electronics; pressure sensors; FEW-LAYER GRAPHENE; SILVER-NANOWIRE NETWORKS; TRANSPARENT CONDUCTORS; HIGH-PERFORMANCE; ELECTRONIC SKIN; THIN-FILMS; HIGH-YIELD; LARGE-AREA; PRESSURE; POLYMER;
D O I
10.1021/acsami.6b04872
中图分类号
TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
Here, we report a new method to prepare graphene from graphite by the liquid phase exfoliation process with sonication using graphene oxide (GO) as a dispersant. It was found that GO nanosheets act a as surfactant to the mediated exfoliation of graphite into a GO-adsorbed graphene complex in the aqueous solution, from which graphene was separated by an additional process. The preparation of isolated graphene from a single to a few layers is routinely achieved with an exfoliation yield of up to higher than 40% from the initial graphite material. The prepared graphene sheets showed a high quality (C/O similar to 21.5), low defect (I-D/I-G similar to 0.12), and high conductivity (6.2 x 10(4) S/m). Moreover, the large lateral size ranging from 5 to 10 mu m of graphene, which is believed to be due to the shielding effect of GO avoiding damage under ultrasonic jets and cavitation formed by the sonication process. The thin graphene film prepared by the spray-coating technique showed a sheet resistance of 668 Omega/sq with a transmittance of 80% at 550 nm after annealing at 350 degrees C for 3 h. The transparent electrode was even greater with the resistance only 66.02 Omega when graphene is deposited on an interdigitated electrode (1 mm gap). Finally, a flexible sensor based on a graphene spray-coating polydimethylsiloxane (PDMS) is demonstrated showing excellent performance working under human touch pressure (<10 kPa). The graphene prepared by this method has some distinct properties showing it as a promising material for applications in electronics including thin film coatings, transparent electrodes, wearable electronics, human monitoring sensors, and RFID tags.
引用
收藏
页码:16521 / 16532
页数:12
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