Qiu Yun, Yang Haibo, Wen Bo, Ma Liang, Lin Ying
Shaanxi Key Laboratory of Green Preparation and Functionalization for Inorganic Materials, School of Materials Science and Engineering, Shaanxi University of Science and Technology, Xi'an 710021, China.
Shaanxi Key Laboratory of Green Preparation and Functionalization for Inorganic Materials, School of Materials Science and Engineering, Shaanxi University of Science and Technology, Xi'an 710021, China.
J Colloid Interface Sci. 2021 May 15;590:561-570. doi: 10.1016/j.jcis.2021.02.003. Epub 2021 Feb 3.
Transition metal carbon composites derived from metal organic frameworks (MOFs) attract increasing attention in microwave absorption field. However, finding a relatively facile and green method to prepare MOFs precursor is still a challenge. Besides, it is also difficult to obtain carbon nanotubes based compounds by only using MOF as sacrificed template. Herein, nickel (Ni) MOF is fabricated at room temperature with water as solvent. Afterwards, nickel/carbon nanotubes composite (Ni/CN) is prepared via only in-situ pyrolysis of Ni MOF. The pyrolysis temperature greatly affects nitrogen (N) dopant state for Ni/CN composites. The Ni/CN composite prepared at 700 °C (Ni/CN-700) exhibits the maximum reflection loss (RL) of -65 dB with the effective absorbing bandwidth (EAB) about 4.6 GHz at 1.9 mm, when the filling loading is only 10 wt% in the matrix. Remarkably, the Ni/CN composite is excellent microwave absorber with lightweight and strong absorption. The magnetic metal/carbon nanotubes derived from MOF prepared in green solvent offers a facile, environmentally friendly and designable strategy for exploring excellent microwave absorber.
源自金属有机框架(MOF)的过渡金属碳复合材料在微波吸收领域引起了越来越多的关注。然而,找到一种相对简便且绿色的方法来制备MOF前驱体仍然是一项挑战。此外,仅使用MOF作为牺牲模板来获得基于碳纳米管的化合物也很困难。在此,以水为溶剂在室温下制备镍(Ni)MOF。之后,仅通过Ni MOF的原位热解制备镍/碳纳米管复合材料(Ni/CN)。热解温度对Ni/CN复合材料的氮(N)掺杂状态有很大影响。在700°C制备的Ni/CN复合材料(Ni/CN-700)在填充量仅为基体的10 wt%时,在1.9 mm处表现出-65 dB的最大反射损耗(RL),有效吸收带宽(EAB)约为4.6 GHz。值得注意的是,Ni/CN复合材料是一种轻质且强吸收的优异微波吸收剂。在绿色溶剂中制备的源自MOF的磁性金属/碳纳米管为探索优异的微波吸收剂提供了一种简便、环保且可设计的策略。