Paper-Cut Flexible Multifunctional Electronics Using MoS2 Nanosheet

被引:21
|
作者
Yang, Dong [1 ,2 ]
Wang, Hao [2 ]
Luo, Shenglin [2 ]
Wang, Changning [2 ]
Zhang, Sheng [3 ]
Guo, Shiqi [4 ,5 ]
机构
[1] Univ Sci & Technol China, Sch Chem & Mat Sci, Hefei 230026, Anhui, Peoples R China
[2] Harvard Med Sch, Athioula A Martinos Ctr Biomed Imaging, Massachusetts Gen Hosp, Dept Radiol, Charlestown, MA 02129 USA
[3] Tokai Univ, Micro Nano Technol Ctr, 4-1-1 Kitakaname, Hiratsuka, Kanagawa 2591292, Japan
[4] George Washington Univ, Sch Engn & Appl Sci, Washington, DC 20052 USA
[5] Harvard Univ, John A Paulson Sch Engn & Appl Sci, Cambridge, MA 02138 USA
来源
NANOMATERIALS | 2019年 / 9卷 / 07期
关键词
highly stretchable electronics; Chinese traditional culture; paper-cut; bioelectronics; 2D material; flexible electronics; KIRIGAMI; GRAPHENE; SILICON; PHOTODETECTORS; FORM;
D O I
10.3390/nano9070922
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Art and science represent human creativity and rational thinking, respectively. When the two seemingly opposite fields are intertwined, there is always a life-changing spark. In particular, the integration of ancient traditional Chinese art into the latest electronic devices is always been an unexcavated topic. Fabricating two-dimensional material with a tensile strain less than 3% with an ultimate global stretch has been an important problem that plagues the current flexible electronics field. The current research is limited to material in small scale, and it is always necessary to develop and extend large-sized flexible electronic systems. Here, inspired by the traditional Chinese paper-cut structure, we present a highly deformable multifunctional electronic system based on the MoS2 nanosheet. In this work, we first demonstrate how the traditional paper-cut structure can open the view of flexible electronics. In order to obtain a large area of MoS2 with excellent performance, we use a metal-assisted exfoliation method to transfer MoS2, followed by fabricating a field effect transistor to characterize its excellent electrical properties. Two photodetectors and a temperature sensor are produced with good performance. The mechanical simulation proves that the structure has more advantages in stretchability than other typical paper-cut structures. From the experimental and mechanical point of view, it is proved that the device can work stably under high deformation. We finally show that the device has broad application prospects in highly deformed organs, tissues, and joints. These findings set a good example of traditional Chinese culture to guide innovation in the field of electronic devices.
引用
收藏
页数:15
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