Graphene Oxide/Nanocrystalline Cellulose Composite: A Facile Phase Modulator

Moses A. Ollengo
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Abstract

In the past few years, graphene and graphene-based materials have received enormous interest from the scientific community due to their extraordinary mechanical, electronic, optical and electrochemical properties. The success of graphene applications highly motivates the exploration of other applications such as in designing of antennas, phase modulation, as a frequency multiplier, design of graphene-based Field Effect Transistors, its use as an electrode in batteries and as a supercapacitor. In this paper, we present the Graphene Oxide/ Nanocrystalline cellulose (GO/NCC) composite material experimental phase modulation investigation. The modulator produced a 0.2πᶜ phase shift and the temporal profile obtained. The insertion loss at an ideal voltage of 2V and the extinction ratio was determined to be 15.17 dB at 25MHz and 12.22 dB respectively. The 0.2πᶜ phase shift demonstrated by GO/NCC implies that it can be used in phase shift keying, specifically, in Off-set quadrature phase-shift keying modulation where a phase change of not greater than π/2 radians at a time is required.
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氧化石墨烯/纳米晶纤维素复合材料:一种简单的相位调制器
在过去的几年里,石墨烯和石墨烯基材料由于其非凡的机械、电子、光学和电化学性能而受到了科学界的极大兴趣。石墨烯应用的成功极大地激发了对其他应用的探索,如天线设计、相位调制、作为倍频器、基于石墨烯的场效应晶体管的设计、作为电池电极和超级电容器的使用。本文对氧化石墨烯/纳米晶纤维素(GO/NCC)复合材料进行了调相实验研究。调制器产生了0.2π的相位偏移,得到了时间分布。在理想电压为2V时的插入损耗和消光比在25MHz时分别为15.17 dB和12.22 dB。GO/NCC所证明的0.2π阶相移意味着它可以用于相移键控,特别是在偏移正交相移键控调制中,其中一次需要的相位变化不大于π/2弧度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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