Wang Lei, Huang Ying, Li Chao, Chen Junjiao, Sun Xu
Department of Applied Chemistry, School of Science, Northwestern Polytechnical University, Xi'an, P. R. China.
Phys Chem Chem Phys. 2015 Feb 28;17(8):5878-86. doi: 10.1039/c4cp05556j.
The fabrication of novel hierarchical graphene@Fe3O4 nanocluster@carbon@MnO2 nanosheet array composites has been successfully carried out for the first time. The fabrication process involves the deposition of Fe3O4 nanoclusters on graphene's surface using a simple in situ hydrothermal method, subsequent introduction of carbon on the surface of graphene@Fe3O4 nanoclusters by combining the hydrothermal reaction and thermal treatment process, and finally formation of the hierarchical composites via a simple in situ redox replacement reaction between potassium permanganate (KMnO4) and carbon on the surface of graphene@Fe3O4 nanoclusters. Moreover, the microwave absorption properties of both graphene@Fe3O4 nanoclusters and hierarchical graphene@Fe3O4 nanocluster@carbon@MnO2 nanosheet array composites were investigated between 2 and 18 GHz microwave frequency bands. The electromagnetic data demonstrate that graphene@Fe3O4 nanocluster@carbon@MnO2 nanosheet array hierarchical composites exhibit significantly enhanced microwave absorption properties compared with graphene@Fe3O4 nanoclusters, which probably originate from the unique hierarchical structure and larger surface area.
新型分级石墨烯@Fe3O4纳米团簇@碳@MnO2纳米片阵列复合材料的制备首次成功完成。制备过程包括使用简单的原位水热法在石墨烯表面沉积Fe3O4纳米团簇,随后通过水热反应和热处理过程在石墨烯@Fe3O4纳米团簇表面引入碳,最后通过高锰酸钾(KMnO4)与石墨烯@Fe3O4纳米团簇表面的碳之间简单的原位氧化还原置换反应形成分级复合材料。此外,研究了石墨烯@Fe3O4纳米团簇和分级石墨烯@Fe3O4纳米团簇@碳@MnO2纳米片阵列复合材料在2至18 GHz微波频段的微波吸收特性。电磁数据表明,与石墨烯@Fe3O4纳米团簇相比,石墨烯@Fe3O4纳米团簇@碳@MnO2纳米片阵列分级复合材料表现出显著增强的微波吸收特性,这可能源于独特的分级结构和更大的表面积。