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Green reduction of graphene oxide by plant extracts: A short review

机译:植物提取物的石墨烯氧化物的绿色减少:简短的评论

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摘要

A reduction of graphene oxide is generally involves the application of toxic and poisonous substance which unfortunately may hinder the potential of this process for mass production of graphene. The utilization of reducing agent such as hydrazine even though can result into a higher rate of deoxygenation of graphene oxide, may not only expose the user to the health risk but also significantly will create serous environmental issues if the applied solvent from a reduction step is accidently released into a water source or ground without a preoutlined disposal waste system. To counter this challenge, a numerous researches that have been working on the plant extracts for reduction of graphene oxide has emerged with the aim is to replace the hydrazine as a main reducing agent. Plant extracts is considered as the sustainable solution for future reduction of graphene oxide due to the low economical cost possess by a plant, is renewable and with a proper optimization of synthesis process, may offer a comparable or higher reduction rate than the conventional hydrazine. In this short review, a progress on the application of plant extracts for the reduction of graphene oxide has been discussed with an overview of the process effect on the properties of reduced graphene oxide and major surface characterization of reduced graphene oxide such as Raman spectroscopy and X-ray photon spectroscopy has also been included. It is wished that the presented review study in this paper will assist current and potential researcher into a discovery of new and novel plant extract-based reductant for future synthesis of the reduced graphene.
机译:石墨烯氧化物的还原通常涉及毒性和有毒物质的应用,这不幸的是可能阻碍该方法的批量生产石墨烯的潜力。降低药剂如肼如肼,甚至可以导致较高的石墨烯氧化氧化速率,可能不仅将用户暴露于健康风险,而且如果从减少步骤的施加溶剂意外,如果意外地产生静态环境问题没有预先扩展的处置废物系统,释放到水源或地面。为了对抗这一挑战,已经出现了用于减少石墨烯氧化物的植物提取物的许多研究,目的是将肼作为主要还原剂代替。由于植物的经济成本低,植物提取物被认为是未来氧化石墨烯氧化物减少的可持续解决方案,可再生和合成过程的适当优化,可以提供比常规肼的相当或更高的减少率。在本次要评审中,已经讨论了对石墨烯氧化物减少的植物提取物的应用进展情况概述了对石墨烯氧化物的性质和石墨烯氧化物如拉曼光谱和X的大规模氧化物的主要表面表征 - 还包括光子光谱光谱。据悉,本文的审查研究将协助当前和潜在的研究人员对未来石墨烯的未来合成的基于新的植物提取物的发现。

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