Opto-Electronic Advances, 2018, 1 (2): 170002, Published Online: Aug. 1, 2018   

Diffractive photonic applications mediated by laser reduced graphene oxides

Author Affiliations
1 Guangdong Provincial Key Laboratory of Optical Fiber Sensing and Communications, Institute of Photonics Technology, Jinan University, Guangzhou 510632, China
2 Laboratory of Artificial-Intelligence Nanophotonics and CUDOS (Centre for Ultrahigh bandwidth Devices for Optical Systems), School of Science, RMIT University, Melbourne, Victoria 3001, Australia
Abstract
Modification of reduced graphene oxide in a controllable manner provides a promising material platform for producing graphene based devices. Its fusion with direct laser writing methods has enabled cost-effective and scalable production for advanced applications based on tailored optical and electronic properties in the conductivity, the fluorescence and the refractive index during the reduction process. This mini-review summarizes the state-of-the-art status of the mechanisms of reduction of graphene oxides by direct laser writing techniques as well as appealing optical diffractive applications including planar lenses, information storage and holographic displays. Owing to its versatility and up-scalability, the laser reduction method holds enormous potentials for graphene based diffractive photonic devices with diverse functionalities.

Sicong Wang, Xueying Ouyang, Ziwei Feng, Yaoyu Cao, Min Gu, Xiangping Li. Diffractive photonic applications mediated by laser reduced graphene oxides[J]. Opto-Electronic Advances, 2018, 1(2): 170002.

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