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Facile One-Pot Solvothermal Synthesis of the RGO/MWCNT/Fe3O4 Hybrids for Microwave Absorption

机译:Facile单壶溶剂热量合成RGO / MWCNT / Fe3O4杂种用于微波吸收

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How to effectively regulate the electromagnetic parameters of magnetic composites to achieve better microwave absorption (MA) performances is still a serious challenge. Herein, we constructed nanocomposites composed of magnetic constituents and carbon materials to obtain high-efficiency electromagnetic wave absorbers. Self-assembled, multi-interfacial, and porous RGO/MWCNT/Fe_(3)O_(4) hybrids (GMFs) were synthesized via in situ one-pot solvothermal method. The growth mechanism of the GMFs would be that the defects on reduced graphene oxide (RGO) provide sites for the crystallization of Fe_(3)O_(4). Also, the RGO and Fe_(3)O_(4) were further linked by the cross-connection of multiwalled carbon nanotubes (MWCNTs), which acted as a bridge. The MA mechanism of GMFs was studied while considering the synergistic effects between the three components (RGO, MWCNT, and raspberry-shaped Fe_(3)O_(4)) and their multi-interfacial and porous structure. Also, the MA performance of the GMFs was conducted. The GMFs exhibited a maximum reflection loss (RL) value of ?61.29 dB at 10.48 GHz with a thickness of 2.6 mm when the contents of RGO and MWCNT were 6.3 and 1.3 wt %, respectively. The RL values (≤?10 dB) were observed to be in the range of 8.96–12.32 GHz, and the effective microwave absorption bandwidth was tunable from 3.52 to 18 GHz by changing the sample thickness. The results revealed that the multi-interfacial and porous structure of the GMFs is beneficial to MA performance by inducing multiscatterings. Since no toxic solvents were used, this method is environmentally friendly and has potential for large-scale production. The prepared GMFs may have a wide range of applications in MA materials against electromagnetic interference pollution.
机译:如何有效调节磁性复合材料的电磁参数,以实现更好的微波吸收(MA)性能仍然是一个严重的挑战。在此,我们构造由磁性成分和碳材料构成的纳米复合材料,以获得高效电磁波吸收剂。通过原位单罐溶剂热法合成自组装,多界面和多孔RGO / MWCNT / MWCNT / FE_(3)O_(4)杂种(GMFS)。 GMFS的生长机制将是石墨烯氧化物(RGO)上的缺陷提供Fe_(3)O_(4)的结晶的位点。此外,RGO和Fe_(3)O_(4)进一步通过了用作桥的多壁碳纳米管(MWCNT)的交叉连接。研究了GMFS的MA机制,同时考虑了三种组分(RGO,MWCNT和覆盆子形FE_(3)O_(4))及其多界面和多孔结构之间的协同效应。此外,进行了GMFS的MA性能。 GMFS在10.48GHz的最大反射损耗(RL)值为10.48GHz,厚度为2.6mm,分别为6.3和1.3wt%。观察到RL值(≤α10dB)为8.96-12.32GHz的范围,通过改变样品厚度,通过3.52至18 GHz可调谐有效的微波吸收带宽。结果表明,通过诱导多刻度,GMF的多界面和多孔结构有利于MA性能。由于没有使用任何有毒溶剂,因此该方法是环保的,并且具有大规模生产的潜力。制备的GMFS可能在MA材料中具有广泛的应用,免受电磁干扰污染。

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