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Morphology-engineered copper-based MOF-199@MWCNTs hybrids for enhanced microwave absorption
Wenbo Li1, Xuyang Jiang1, Xia Wang1
1School of Chemistry and Chemical Engineering, Northwestern Polytechnical University, Xi'an, People's Republic of China.
None:
Metal-organic frameworks (MOFs) of MOF-199 with three distinct morphologies-cubic (hexahedral)-A, octahedral-B and tetradecahedral-C-were prepared by solvothermal method via adjusting the amount of coordination modulator of lauric acid. Meanwhile, absorbing hybrids of MOF-199@multi-walled carbon nanotubes (MWCNTs) with a three-dimensional structure were constructed viaπ-πstacking interactions between benzene ringπ-electrons in the organic ligand of MOF-199 andπelectronic of MWCNTs. Scanning electron microscopy images demonstrated that MOFs particles with three distinct morphologies were obtained, with an average particle size of approximately 2μm. The aim of this study is to investigate the influence of MOF morphology on the absorption performance. Due to the increased number of facets and relatively abundant heterogeneous interfaces of tetradecahedral MOF-199-C, the RLminof MOF-199-C@MWCNTs hybrids reach up to -48.16 dB, which is higher than that of cubic MOF-199-A@MWCNTs (-23.21 dB) hybrids and octahedral MOF-199-B@MWCNTs (-45.77 dB) hybrids. The results indicated that increasing the number of facets promotes multiple scattering and internal reflection of electromagnetic waves, which increases the heterogeneous interfaces and promotes absorption performance.
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