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Progress in graphene-based materials as superior media for sensing, sorption, and separation of gaseous pollutants

机译:石墨烯基材料作为用于感测,吸附和分离气态污染物的优良介质的研究进展

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Rapid population growth accompanied by industrialization and urbanization has led to a noticeable degradation of air quality. There is a strong need to appraise novel materials for the treatment of diverse pollutants in the atmosphere. Among them, graphene oxide (GO) is envisaged as one of the most promising layered materials with expansive applicability in numerous fields, especially in the pollutant removal processes, due to many uniquely advantageous features (e.g., tunable physical properties, excellent thermal stability, electrical conductivity, exceptionally high surface area, and pore volume). In the last decade, researchers have also put much efforts to produce graphene-based composites through the fabrication of graphene or GO with a variety of materials such as carbon nanotubes, metallic nanoparticles, metal-organic framework, and polymers. Because of the advanced features (e.g., strong mechanical and anti-corrosive properties, stimuli responsive property, and high porosity) of graphene-based composites, they have been used preferably for air quality management (AQM) through adsorption, separation, and sensing of gaseous pollutants. In this comprehensive review, we offer a contemporary state of the art discussion on using graphene-based composites for AQM purposes. The nature of the interactions between composites and various types of gaseous pollutants has hence been reviewed in various respects. To expedite further research and development on this topic, we take into consideration the technical challenges with suggestions for the directions of relevant future research. (C) 2018 Elsevier B.V. All rights reserved.
机译:人口的快速增长,伴随着工业化和城市化,导致空气质量显着下降。迫切需要评估用于处理大气中各种污染物的新型材料。其中,由于许多独特的有利特性(例如,可调节的物理特性,出色的热稳定性,电学特性),氧化石墨烯(GO)被认为是最有前途的层状材料之一,在许多领域,尤其是在污染物去除过程中具有广泛的适用性。电导率,极高的表面积和孔体积)。在过去的十年中,研究人员还付出了很多努力,通过使用各种材料(例如碳纳米管,金属纳米颗粒,金属有机骨架和聚合物)制造石墨烯或GO来生产基于石墨烯的复合材料。由于石墨烯基复合材料的先进特性(例如,强大的机械和耐腐蚀性能,刺激响应特性和高孔隙率),它们优选通过吸附,分离和感测来用于空气质量管理(AQM)。气态污染物。在这份全面的综述中,我们提供了有关将石墨烯基复合材料用于AQM的最新技术讨论。因此,已经在各个方面对复合物与各种类型的气态污染物之间相互作用的性质进行了综述。为了加快对此主题的进一步研究和开发,我们考虑了技术挑战并提出了相关未来研究方向的建议。 (C)2018 Elsevier B.V.保留所有权利。

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