Chen Cong, Chen Wen, Zong Bing, Ding Xiaohai, Dong Haitao
School of Physics and Electronic Information Engineering, Qinghai Nationalities University Xining 810007 PR China
Asia Silicon (Qinghai) Co., Ltd Xining Qinghai 810007 China.
Nanoscale Adv. 2021 Mar 11;3(8):2343-2350. doi: 10.1039/d0na00548g. eCollection 2021 Apr 20.
Magnetic carbon-based composites have been attractive candidates for electromagnetic (EM) absorption due to their dual magnetic and dielectric loss ability. In this study, a novel magnetic carbon consisting of N-doped graphitized carbon and magnetic Fe nanoparticles was produced. First, the graphitized carbon doped with N has been demonstrated to be an efficient way to strengthen the conductivity loss ability. Based on the N-doped graphitized carbon (NGC), the magnetic Fe nanoparticles were further decorated on the NGC, which was not only favored the dielectric loss ability but also introduced the magnetic loss ability. The electromagnetic absorbing properties of the NGC-Fe nanoparticles were evaluated in the frequency range of 2-18 GHz, and as expected, the sample exhibited the excellent wideband EM absorbing ability, with an effective absorption region of 5.2 GHz under a thickness of 1.2 mm. Ulilization of element doping method consisted to modify magnetic carbon material can be a candidate for producing wideband EM absorbers but showing thin thickness.
磁性碳基复合材料因其兼具磁损耗和介电损耗能力,一直是电磁吸收领域颇具吸引力的候选材料。在本研究中,制备了一种由氮掺杂石墨化碳和磁性铁纳米颗粒组成的新型磁性碳材料。首先,已证明氮掺杂石墨化碳是增强电导率损耗能力的有效方法。基于氮掺杂石墨化碳(NGC),进一步在其上修饰磁性铁纳米颗粒,这不仅有利于介电损耗能力,还引入了磁损耗能力。在2-18 GHz频率范围内评估了NGC-铁纳米颗粒的电磁吸收性能,不出所料,该样品表现出优异的宽带电磁吸收能力,在1.2 mm厚度下有效吸收带宽为5.2 GHz。利用元素掺杂方法来改性磁性碳材料有望成为制备具有薄厚度的宽带电磁吸收体的一种选择。