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Metal-organic polymer coordination materials derived Co/N-doped porous carbon composites for frequency-selective microwave absorption

机译:金属 - 有机聚合物配位材料衍生的CO / N掺杂多孔碳复合材料用于频率选择性微波吸收

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摘要

Structure design and composition control are two crucial factors in determining the microwave absorption performance for absorbers, however, it still possess formidable challenges to balance the dual coordination between them. Herein, a coordination assembly strategy is used to synthesize Co2+-organic polymer coordination materials, then, Co/N-doped porous carbon (Co/NPC) composites, in which Co particles encapsulated in the interior framework of N-doped porous carbon, are obtained by a high-temperature treatment. The increase of the pyrolysis temperature promotes the enhancement of specific surface area while leads to lower N heteroatoms and the agglomeration of Co particles, resulting in adjusted microwave absorption intensity and bandwidth with frequency-selectivity. Balancing the promoted impedance matching, the synergetic effects between dielectric/magnetic components and multiple reflection/scattering, the Co/NPC-800 composites display the strongest microwave absorption intensity with a minimum reflection loss of -65.1 dB at 2.5 mm while an effective bandwidth (-10 dB) of 9.4 GHz can be achieved for Co/NPC-700 composites with a thickness of 3.2 mm. The synthesized Co/NPC composites with large specific surface area, lower filler loading and excellent microwave absorption possess a potential application in lightweight absorbers and this strategy provides a new paradigm for the design of microwave absorption materials derived from metal-organic polymer coordination composites.
机译:结构设计和组合对照是确定吸收器微波吸收性能的两个关键因素,但是,它仍然具有适得的挑战,以平衡它们之间的双重协调。这里,配位组件策略用于合成CO 2 +-无论聚合物配位材料,然后,CO / N掺杂多孔碳(CO / NPC)复合材料,其中包封在N掺杂多孔碳的内部框架中的CO颗粒通过高温处理获得。热分解温度的增加促进了比表面积的增强,同时导致较低的N杂原子和CO颗粒的凝聚,导致具有频率选择性的调节微波吸收强度和带宽。平衡促进的阻抗匹配,介电/磁性部件和多重反射/散射之间的协同效应,CO / NPC-800复合材料显示最强的微波吸收强度,最小反射损耗为-65.1dB,在2.5毫米处,有效带宽(厚度为3.2mm的CO / NPC-700复合材料,可以实现9.4GHz的9.4GHz。具有大的比表面积,较低的填充物负载和优异的微波吸收的合成的CO / NPC复合材料具有轻质吸收剂的潜在应用,并且该策略为衍生自金属 - 有机聚合物配位复合材料的微波吸收材料的设计提供了一种新的范例。

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