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Wafer-scale integration of graphene-based electronic, optoelectronic and electroacoustic devices.


ABSTRACT: In virtue of its superior properties, the graphene-based device has enormous potential to be a supplement or an alternative to the conventional silicon-based device in varies applications. However, the functionality of the graphene devices is still limited due to the restriction of the high cost, the low efficiency and the low quality of the graphene growth and patterning techniques. We proposed a simple one-step laser scribing fabrication method to integrate wafer-scale high-performance graphene-based in-plane transistors, photodetectors, and loudspeakers. The in-plane graphene transistors have a large on/off ratio up to 5.34. And the graphene photodetector arrays were achieved with photo responsivity as high as 0.32 A/W. The graphene loudspeakers realize wide-band sound generation from 1 to 50 kHz. These results demonstrated that the laser scribed graphene could be used for wafer-scale integration of a variety of graphene-based electronic, optoelectronic and electroacoustic devices.

SUBMITTER: Tian H 

PROVIDER: S-EPMC3884221 | biostudies-literature | 2014

REPOSITORIES: biostudies-literature

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Wafer-scale integration of graphene-based electronic, optoelectronic and electroacoustic devices.

Tian He H   Yang Yi Y   Xie Dan D   Cui Ya-Long YL   Mi Wen-Tian WT   Zhang Yuegang Y   Ren Tian-Ling TL  

Scientific reports 20140108


In virtue of its superior properties, the graphene-based device has enormous potential to be a supplement or an alternative to the conventional silicon-based device in varies applications. However, the functionality of the graphene devices is still limited due to the restriction of the high cost, the low efficiency and the low quality of the graphene growth and patterning techniques. We proposed a simple one-step laser scribing fabrication method to integrate wafer-scale high-performance graphen  ...[more]

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