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Facile synthesis of ZIF-67 derived dodecahedral C/NiCO2S4 with broadband microwave absorption performance

机译:简单的合成zif - 67派生十二面体的C / NiCO2S4与宽带微波吸收性能

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摘要

The increasing hazard of electromagnetic radiation prompts people to pursue absorbing materials with better performance. However, absorbing materials with a single loss mechanism usually is unable to obtain better absorbing performance due to low impedance matching or high filling ratio. Therefore, this work proposes a C/NiCo2S4 (CNCS) material with both dielectric loss/magnetic loss to achieve efficient absorption of electromagnetic waves. The simple preparation of CNCS materials was achieved through the etching of the ZIF-67 template by nickel nitrate and the subsequent hydrothermal vulcanization process. Its unique prismatic dodecahedron hollow structure promotes multiple scattering of electromagnetic waves. The attachment of the magnetic NiCo2S4 particles on the surface of the carbon template further promotes the interface polarization and dipole polarization, which is equivalent to the formation of a resistance-rich microcircuit and enhances the effect of the conductance loss on electromagnetic waves. At 2-18 GHz, the CNCS-2 with 30% paraffin addition achieves an effective bandwidth of 5.54 GHz at a matching thickness of 1.7 mm, and has a maximum reflection loss of -36.44 dB at 1.5 mm. By adjusting the thickness of the material matching layer (1-3 mm), an effective bandwidth of up to 13.48 GHz can be achieved, perfectly covering the X-band and Ku-band. Based on the simple preparation process of the material, the special hollow structure and the multiple loss mechanisms for electromagnetic waves, we believe that CNCS can become a strong competitor for high-efficiency broadband absorbers.
机译:电磁辐射的增加风险促使人们去追求吸收材料更好的性能。通常是无法用一个损失机制获得更好的吸收性能低阻抗匹配或高充填率。因此,这项工作提出了一种C / NiCo2S4(加工中心)材料的介电损耗/磁损耗实现有效的吸收电磁波。加工中心是通过腐蚀材料zif - 67模板由硝酸镍和后续水热硫化过程。其独特的棱镜十二面体空洞促进多个散射的结构电磁波。磁NiCo2S4粒子表面的碳模板进一步促进界面极化和偶极子极化相当于resistance-rich的形成微电路,增加的影响在电磁波电导损耗。最近GHz, CNCS-2石蜡添加30%达到一个有效带宽的5.54 GHz匹配厚度1.7毫米,最大反射损失为-36.44 dB在1.5毫米。调整材料的厚度匹配层(1 - 3毫米),一个有效的带宽可以实现13.48 GHz,完全覆盖了x波段和ku波段。准备材料的过程,特别空心结构和多个损失机制对于电磁波,我们相信加工中心可以成为一个强大的竞争对手高效的宽带吸收器。

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