Graphene 是因为它的唯一的结构和物理化学的性质,吸引了可观的研究兴趣的有趣的二维的碳同素异形体。研究包括修改 graphene, graphene/semiconductor 混血儿, graphene/metal nanoparticle composites,和 graphene 复杂的氧化物 composites 在基于 graphene 的 nanomaterials 上被进行了。这些 nanomaterials 在他们的表面上继承功能的组或 nanoparticle composites 的 graphene,和增加的唯一的性质改进他们的表演。在污染物质移动和环境补习的这些材料的应用被探索了。从环境化学和材料的观点,这篇论文在环境污染的处理在 graphene 相关的材料和他们的申请的合成考察最近的重要进展。在污染物质移动和潜在的研究的基于 graphene 的材料的角色被讨论。
Graphene is an interesting two-dimensional carbon allotrope that has attracted considerable research interest because of its unique structure and physicochemical properties. Studies have been conducted on graphene-based nanomaterials including modified gra- phene, graphene/semiconductor hybrids, graphene/metal nanoparticle composites, and graphene-complex oxide composites. The- se nanomaterials inherit the unique properties of graphene, and the addition of functional groups or the nanoparticle composites on their surfaces improves their performance. Applications of these materials in pollutant removal and environmental remediation have been explored. From the viewpoint of environmental chemistry and materials, this paper reviews recent important advances in synthesis of graphene-related materials and their application in treatment of environmental pollution. The roles of gra- phene-based materials in pollutant removal and potential research are discussed.