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首页> 外文期刊>ACS applied materials & interfaces >High-Performance Electromagnetic Wave Absorbers Based on Two Kinds of Nickel-Based MOF-Derived Ni@C Microspheres
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High-Performance Electromagnetic Wave Absorbers Based on Two Kinds of Nickel-Based MOF-Derived Ni@C Microspheres

机译:基于两种基于镍的MOF衍生Ni @ C微球的高性能电磁波吸收器

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Metal–organic framework (MOF)-derived composites on the microwave absorption have received extensive attention. However, which kind of organic ligand corresponding MOF derivative has better electromagnetic wave absorption performance is an urgent problem to be solved. In this work, two kinds of [email?protected] derived from the Ni-based MOFs with two kinds of organic ligands (dimethylimidazole as a ligand named as Ni-ZIF and trimesic acid as a ligand named as Ni-BTC) were successfully obtained. The compositions, morphologies, and electromagnetic properties of two composites were well controlled. As a result, both kinds of [email?protected] exhibited the good microwave absorption properties. Comparatively speaking, the [email?protected] derived from Ni-ZIF performs better. The [email?protected] microspheres with a 40% mass filling ratio exhibited a strong reflection loss of ?86.8 dB at 13.2 GHz when the matching thickness was 2.7 mm, and the corresponding effective absorption bandwidth was 7.4 GHz (4–11.4 GHz) with the thickness ranging from 1.5 to 4.0 mm. The impedance matching, multiple reflection, and interfacial polarization among Ni and C were beneficial to the enhancement of microwave attenuation, which N-doping introduced by nitrogen-containing ligands leads to excellent microwave absorption properties. Therefore, this work can give insights into understanding the absorbing mechanism as well as provide a simple and flexible paradigm for the design and synthesis of the absorber with the tunable and high-efficiency performances.
机译:微波吸收上的金属有机框架(MOF)的复合材料已经受到广泛关注。然而,哪种有机配体相应的MOF衍生物具有更好的电磁波吸收性能是亟待解决的迫切问题。在这项工作中,成功地获得了两种[电子邮件吗?受保护的源自基于Ni的MOF的MOF(作为作为Ni-ZIF和作为Ni-BTC的配体命名为Ni-ZIF的与共同配体的配体) 。两种复合材料的组合物,形态和电磁特性很好地控制。结果,两种[电子邮件吗?受保护的]表现出良好的微波吸收性能。相对讲话,从Ni-ZIF得出的[电子邮件吗?受保护的]表现得更好。具有40%质量填充率的[电子邮件吗?受保护的]微球在13.2GHz时显示出强烈的反射损耗,当匹配厚度为2.7毫米时,相应的有效吸收带宽为7.4 GHz(4-11.4 GHz)厚度范围为1.5至4.0毫米。 Ni和C之间的阻抗匹配,多重反射和界面偏振有利于微波衰减的增强,所述微波衰减是由含氮配体引入的n掺杂导致优异的微波吸收性能。因此,这项工作可以洞察理解吸收机制,并为吸收器的设计和合成提供简单而灵活的范式,具有可调谐和高效性能。

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