Korea Institute of Science and Technology (KIST), Jeonbuk, 864-9 Dunsan-ri, Bongdong-eup, Wanju-gun, Jeollabuk-do 565-902, Republic of Korea.
Chemistry. 2011 Jan 24;17(4):1214-9. doi: 10.1002/chem.201002252. Epub 2010 Dec 10.
We report the synthesis of graphenes with tunable properties due to the growth of needlelike iron oxide (IO) nanoparticles on their surfaces. The electrical conductivity, flexibility, and magnetic properties of graphene nanosheets (GNSs) could be tuned on demand by fine controlling both the surface coverage and the length of the IO nanoneedles. The degree of coverage of the IO nanoparticles on the surface of the GNSs made it possible to control the resulting properties of the IO/GNSs on demand. As examples of their utility, paperlike materials were generated by simple filtration, and the resulting IO/GNS nanocomposites showed extraordinary removal capacity and fast adsorption rates for As(V) and Cr(VI) ions in water. Another possible application is the preparation of multifunctional films equipped with conductivity, flexibility, and magnetic properties. The fabrication process is easy to scale up at a low cost. In addition, both the colloidal solution and film forms of the resulting IO/GNSs were effective for removal of heavy metal ions, meaning this material could be utilized for actual industrial applications.
我们报告了由于针状氧化铁(IO)纳米粒子在其表面上的生长,石墨烯的性质可调的合成。通过精细控制 IO 纳米针的表面覆盖率和长度,可以按需调整石墨烯纳米片(GNS)的电导率、柔韧性和磁性能。IO 纳米粒子在 GNS 表面的覆盖程度使得能够按需控制 IO/GNS 的最终性质。作为其用途的示例,通过简单的过滤生成了类纸材料,并且所得的 IO/GNS 纳米复合材料对于水中的 As(V)和 Cr(VI)离子表现出非凡的去除能力和快速吸附速率。另一个可能的应用是制备具有导电性、柔韧性和磁性能的多功能薄膜。该制造过程易于以低成本扩展。此外,所得 IO/GNS 的胶体溶液和薄膜形式对于去除重金属离子均有效,这意味着该材料可用于实际的工业应用。