Graphene Materials: From Synthesis to Applications

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  Great achievements have been made in graphene research area since 2004, however, it is still remains a great challenge for realizing large-scale controlled synthesis and real applications of graphene materials. In the past several years, we have systematically studied the controlled synthesis of graphene materials aiming at different applications including electronics, optoelectronics, energy storage and composites [1-12]. First, we have developed an ambient pressure chemical vapor deposition (CVD) process to grow millimeter-size single-crystal graphene on Pt [2], observed the edge-dependent growth behavior of graphene [3], found an efficient way to heal the defects in graphene [4], proposed a nondestructive electrochemical bubbling transfer method [2], realized the roll-to-roll production of large-area graphene transparent conductive films (TCFs), and demonstrated the use of graphene TCFs in flexible touch panels and OLEDs.
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