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Reduced graphene oxide today

机译:今天还原的石墨烯氧化物

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摘要

Reduced graphene oxide has similar mechanical, optoelectronic or conductive properties to pristine graphene because it possesses a heterogeneous structure comprised of a graphene-like basal plane that is additionally decorated with structural defects and populated with areas containing oxidized chemical groups. The graphene-like properties make reduced graphene oxide a highly desirable material to be used in a plethora of sensorial, biological, environmental or catalytic applications as well as optoelectronic and storage devices. To further advance the development of the existent technologies and to design novel and better applications based on reduced graphene oxide, it is first necessary to understand which synthetic routes and processing strategies are suitable to significantly boost specific properties of this material alone or as a component in various composites. Therefore, in this work, we review the most important categories of recent applications based on reduced graphene oxide, with the emphasis on the relationship between the enhanced composite/device functionality and methods used to synthesize, to functionalize and/or to process and to structure reduced graphene oxide.
机译:将石墨烯还原具有与原始石墨烯类似的机械,光电子或导电性能,因为它具有由石墨烯的基底平面构成的异质结构,其另外用结构缺陷装饰并填充含有氧化化学基团的区域。石墨烯样特性使得石墨烯氧化物的高望值材料制成,以在血清中使用的高温,生物,环境或催化应用以及光电和储存装置中使用。为了进一步推进现有技术的发展和基于石墨烯氧化物的产品设计新颖和更好的应用,首先是理解哪种合成路线和加工策略适合于显着提高本材料的特定性质或作为组分各种复合材料。因此,在这项工作中,我们审查了基于氧化石墨烯的最新应用中最重要的应用类别,强调增强的复合/器件功能和用于合成的方法,以便对功能化和/或处理和结构还原石墨烯氧化物。

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