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三维石墨烯基宏观结构在环境中的应用:吸附、转化和检测。

Environmental applications of three-dimensional graphene-based macrostructures: adsorption, transformation, and detection.

机构信息

Department of Environmental Science, Zhejiang University , Hangzhou 310058, China.

出版信息

Environ Sci Technol. 2015 Jan 6;49(1):67-84. doi: 10.1021/es504421y. Epub 2014 Dec 16.

Abstract

Just as graphene triggered a new gold rush, three-dimensional graphene-based macrostructures (3D GBM) have been recognized as one of the most promising strategies for bottom-up nanotechnology and become one of the most active research fields during the last four years. In general, the basic structural features of 3D GBM, including its large surface area, which enhances the opportunity to contact pollutants, and its well-defined porous structure, which facilitates the diffusion of pollutant molecules into the 3D structure, enable 3D GBM to be an ideal material for pollutant management due to its excellent capabilities and easy recyclability. This review aims to describe the environmental applications and mechanisms of 3D GBM and provide perspective. Thus, the excellent performance of 3D GBM in environmental pollutant adsorption, transformation and detection are reviewed. Based on the structures and properties of 3D GBM, the removal mechanisms for dyes, oils, organic solvents, heavy metals, and gas pollutants are highlighted. We attempt to establish "structure-property-application" relationships for environmental pollution management using 3D GBM. Approaches involving tunable synthesis and decoration to regulate the micro-, meso-, and macro-structure and the active sites are also reviewed. The high selectivity, fast rate, convenient management, device applications and recycling utilization of 3D GBM are also emphasized.

摘要

正如石墨烯引发了新的淘金热一样,三维石墨烯基宏观结构(3DGBM)已被认为是自下而上纳米技术最有前途的策略之一,并成为过去四年中最活跃的研究领域之一。一般来说,3DGBM 的基本结构特征,包括其大的表面积,增加了与污染物接触的机会,以及其明确的多孔结构,有利于污染物分子扩散到 3D 结构中,使 3DGBM 成为一种理想的污染物管理材料,因为它具有优异的能力和易于回收利用。本综述旨在描述 3DGBM 的环境应用和机制,并提供展望。因此,综述了 3DGBM 在环境污染物吸附、转化和检测方面的优异性能。基于 3DGBM 的结构和性质,重点介绍了染料、油、有机溶剂、重金属和气体污染物的去除机制。我们试图使用 3DGBM 建立用于环境污染管理的“结构-性质-应用”关系。还综述了涉及可调合成和修饰以调节微观、介观和宏观结构和活性位点的方法。强调了 3DGBM 的高选择性、快速率、方便管理、器件应用和回收利用。

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