首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Double-Shelled Yolk-Shell Microspheres with Fe3O4 Cores and SnO2 Double Shells as High-Performance Microwave Absorbers
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Double-Shelled Yolk-Shell Microspheres with Fe3O4 Cores and SnO2 Double Shells as High-Performance Microwave Absorbers

机译:Fe3O4核和SnO2双层壳作为高性能微波吸收剂的双壳卵黄壳微球

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摘要

Double-shelled yolk-shell microspheres with Fe3O4 cores and SnO2 double shells have been successfully synthesized by combining the versatile sol-gel process and hydrothermal shell-by-shell deposition method. The as-synthesized double-shelled Fe3O4@SnO2 yolk-shell microspheres have uniform size, unique morphology, well-defined shells, favorable magnetization, large specific surface area, and high porosity and exhibit significantly enhanced microwave absorption properties in terms of both the maximum reflection loss value and the absorption bandwidth. The excellent microwave absorption properties of these microspheres may be attributed to the unique double-shelled yolk-shell structure and synergistic effect between the magnetic Fe3O4 cores and dielectric SnO2 shells.
机译:通过将通用的溶胶-凝胶法和水热逐壳沉积法相结合,成功地合成了具有Fe3O4核和SnO2双壳的卵黄双壳微球。合成后的双壳Fe3O4 @ SnO2卵黄壳微球尺寸均匀,形态独特,壳分明,磁化良好,比表面积大,孔隙率高,并且在最大吸收率和最大吸收率方面均具有显着增强的微波吸收性能反射损耗值和吸收带宽。这些微球的出色的微波吸收性能可能归因于独特的双壳蛋黄壳结构以及磁性Fe3O4核与电介质SnO2壳之间的协同效应。

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