Wang Xueling, Zhang Xuan, He Aining, Guo Jing, Liu Zhiliang
College of Chemistry and Chemical Engineering, Inner Mongolia University, Hohhot 010021, P. R. China.
Inorg Chem. 2024 Apr 15;63(15):6948-6956. doi: 10.1021/acs.inorgchem.4c00387. Epub 2024 Apr 4.
Conductive metal-organic frameworks (cMOFs), which have high porosity and intrinsic electron conductivity, are regarded as ideal candidates for electromagnetic wave (EMW) absorption materials. Controlling the nanostructure of absorbers may be one of the effective strategies to improve the electromagnetic wave (EMW) absorption performance. Herein, a series of conductive Cu-HHTP MOFs (HHTP = 2,3,6,7,10,11-hexahydroxytriphenyl hydrates) with different nanostructures or crystal morphologies were successfully synthesized by using different structural inducers to regulate the changes in the morphology, thereby improving the EMW absorption performance. Specifically, when ammonia was used as an inducer, the obtained A-Cu-HHTP with a nanosheet structure exhibited excellent EMW absorption performance. The minimum reflection loss (RL) can reach -51.08 dB at 7.25 GHz with a thickness of 4.4 mm, and the maximum effective absorption bandwidth (EAB) can cover 5.73 GHz at 2.5 mm. The influence of the nanostructures of the cMOFs on the dielectric and EMW absorption performance was clarified. The nanosheet structure of A-Cu-HHTP increases its specific surface area, which expands multiple scattering and reflection paths of incident EMW; Meanwhile, the unique structure facilitates the formation of more heterogeneous interfaces, optimizing impedance matching. The significant improvement in EMW performance is mainly attributed to multiple reflections and scattering as well as impedance matching. This work not only provides a simple and effective strategy for improving electromagnetic wave absorption performance but also offers guidelines for preparing morphology functional cMOF materials.
具有高孔隙率和固有电子导电性的导电金属有机框架(cMOF)被视为电磁波(EMW)吸收材料的理想候选者。控制吸收剂的纳米结构可能是提高电磁波(EMW)吸收性能的有效策略之一。在此,通过使用不同的结构诱导剂来调节形态变化,成功合成了一系列具有不同纳米结构或晶体形态的导电Cu-HHTP MOF(HHTP = 2,3,6,7,10,11-六羟基三苯基水合物),从而提高了EMW吸收性能。具体而言,当使用氨作为诱导剂时,所获得的具有纳米片结构的A-Cu-HHTP表现出优异的EMW吸收性能。在厚度为4.4 mm时,最小反射损耗(RL)在7.25 GHz可达到-51.08 dB,最大有效吸收带宽(EAB)在2.5 mm时可覆盖5.73 GHz。阐明了cMOF的纳米结构对介电和EMW吸收性能的影响。A-Cu-HHTP的纳米片结构增加了其比表面积,扩大了入射EMW的多重散射和反射路径;同时,独特的结构有助于形成更多的异质界面,优化阻抗匹配。EMW性能的显著提高主要归因于多重反射和散射以及阻抗匹配。这项工作不仅为提高电磁波吸收性能提供了一种简单有效的策略,还为制备形态功能化的cMOF材料提供了指导。