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首页> 外文期刊>Nanoscale >Morphology-controlled synthesis and excellent microwave absorption performance of ZnCo2O4 nanostructures via a self-assembly process of flake units
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Morphology-controlled synthesis and excellent microwave absorption performance of ZnCo2O4 nanostructures via a self-assembly process of flake units

机译:Morphology-controlled合成和优秀的ZnCo2O4的微波吸收性能通过自组装纳米结构的过程片的单位

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Pure dielectric microwave absorbers with strong attenuation capability and wide-band response become a challenge for efficient electromagnetic wave energy absorption. Herein, a series of ZnCo2O4 hierarchical structures with superior absorption performance have been achieved by tuning their surface architectures from ball-, hydrangea- to cabbage-, and pineapple-like morphologies. A facile one-step synthesis strategy using a self-assembly process with ZnCo2O4 crystalline flakes as structural units was proposed. The deionized water solution and urea addition were found to critically determine the formation of our unique cabbage-like ZnCo2O4 self-assembled morphology. The wide band and distinct absorption was dominantly contributed from dielectric ZnCo2O4 flakes, which could be furthermore adjusted by the above-mentioned morphologies. Due to its abundant void volume stacked by flakes, the cabbage-like ZnCo2O4 demonstrated the best absorption performance where the RLmax reached -36.33 dB at 9.5 GHz with an efficient bandwidth of 5.11 GHz (RL -10 dB, 11.17-16.28 GHz). Adjusting the simulating thickness from 1 to 5 mm, the bandwidths range from 5.8 to 18 GHz. This unique structure has the polarization, conduction loss and strong dissipation capability resulting from the high density of accumulated charges trapped by the flake gap, confirmed by the analysis of electromagnetic parameters and electronic holography. It is expected that the self-assembled ZnCo2O4 microsphere might shed new light on the design of novel microwave absorption materials.
机译:纯电介质微波吸收剂与强大衰减能力和宽带响应成为有效的电磁的一个挑战波能量吸收。与上级ZnCo2O4层次结构通过吸收性能从球——优化表面结构,绣球花-白菜,pineapple-like形态。使用一个自组装过程和策略ZnCo2O4水晶片作为结构单元提出了。尿素添加被发现非常确定我们独特的长着卷心菜形状的ZnCo2O4的形成自组装形态。不同的吸收是主导性贡献从电介质ZnCo2O4片此外,上述调整形态。叠片,长着卷心菜形状的ZnCo2O4展示最佳的吸收性能RLmax达到-36.33 dB在9.5 GHz的有效带宽5.11 GHz (RL & dB, 11.17 - -16.28 GHz)。从1到5毫米厚度,带宽范围内从5.8到18 GHz。极化,传导损失和强壮所引起的耗散能力高被困在密度积累的指控片差距,分析确认电磁参数和电子全息术。自组装ZnCo2O4微球可能新设计的新型微波吸收材料。

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