Electrical and optical properties of layer-stacked graphene transparent electrodes using self-supporting transfer method》.pdf

Electrical and optical properties of layer-stacked graphene transparent electrodes using self-supporting transfer method》.pdf

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Electrical and optical properties of layer-stacked graphene transparent electrodes using self-supporting transfer method》.pdf

Synthetic Metals 203 (2015) 215–220 Contents lists available at ScienceDirect Synthetic Metals journal homepage: www.elsevier.c om/locate/sy nmet Electrical and optical properties of layer-stacked graphene transparent electrodes using self-supporting transfer method Jing Ning, Dong Wang *, Chunfu Zhang, Zhizhe Wang, Shi Tang, Dazheng Chen, Yonggui Shi, Jincheng Zhang *, Yue Hao The State Key Discipline Laboratory of Wide Band Gap Semiconductor Technology, Xidian University, Xi ’an 710071, China A R T I C L E I N F O A B S T R A C T Article history: We present a systemic investigation on electrical and optical properties of layer-stacked graphene Received 18 December 2014 transparent electrodes using a self-supporting method (SSM). As is expected, SSM-stacked films appear Received in revised form 2 February 2015 smoother surface morphologies (roughness of 4.60 nm for 5-layer sample) than the traditional layer Accepted 5 February 2015 stacking method. The non-contact electrical measurement demonstrates that sheet resistances of layer- Available online 3 March 2015 stacked samples obviously diminish after the layer stacking process, which is only 20.16 V/ for the 5-layer-SSM-stacked sample. All the SSM samples show high white light transparency (88% for 5-layer Keywords: sample). The ultraviolet–visible–infrared absorption spectra indicate that there are two

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