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Co2+/Co3+ ratio dependence of electromagnetic wave absorption in hierarchical NiCo2O4-CoNiO2 hybrids

机译:NiCo2O4-CoNiO2杂化体中电磁波吸收的Co2 + / Co3 +比值依赖性

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Amorphous hierarchical NiCo2O4-CoNiO2 hybrids have been successfully fabricated via a facile one-pot hydrothermal route, followed by morphological conversion into urchin-like structured NiCo2O4-CoNiO2 nanorods and irregular-shaped hierarchical NiCo2O4-CoNiO2 polyhedral nanocrystals through air-annealing treatment at 450 degrees C and 650 degrees C, respectively. The phase structure, morphology and chemical composition have been characterized in detail. Calcined hierarchical NiCo2O4-CoNiO2 hybrids show improved microwave absorption properties, which are ascribed to the synergistic effect of dielectric CoNiO2 and NiCo2O4 phases. In particular, the calcined hierarchical NiCo2O4-CoNiO2 hybrids at 450 degrees C exhibit significant enhancement in complex permittivity with respect to others due to their remarkable dipole polarization and interfacial polarization. The maximum reflection loss (RL) of the calcined hierarchical NiCo2O4-CoNiO2 hybrids at 450 degrees C reaches -42.13 dB at 11.84 GHz with a matching thickness of 1.55 mm, and a relatively broad absorption bandwidth (RL <= 10 dB) in the 13.12-17.04 GHz range. Very interestingly, the electromagnetic (EM) wave absorption performance of the hierarchical NiCo2O4-CoNiO2 hybrids shows dependence on the Co2+/Co3+ ratio. The calcined NiCo2O4-CoNiO2 hybrids at 450 degrees C of the most defect concentration possess the best EM wave absorption ability among all the samples. The results suggest that appropriate interactions between the building blocks in hybrids can guide us to design and fabricate highly efficient EM wave absorption materials.
机译:通过便捷的一锅水热法成功地制备出了无定形的NiCo2O4-CoNiO2杂化体,然后通过450℃的空气退火处理,将形态学转化为海胆状的NiCo2O4-CoNiO2纳米棒和不规则形状的分层NiCo2O4-CoNiO2多面体纳米晶体。 C和650摄氏度。已经详细表征了相结构,形态和化学组成。煅烧的分层NiCo2O4-CoNiO2杂化物显示出改善的微波吸收性能,这归因于电介质CoNiO2和NiCo2O4相的协同作用。特别地,由于煅烧的分层NiCo 2 O 4 -CoNiO 2杂化剂具有显着的偶极极化和界面极化,因此它们在450℃下的复介电常数相对于其他具有显着增强。煅烧的NiCo2O4-CoNiO2杂化体在450摄氏度时的最大反射损耗(RL)在11.84 GHz时达到-42.13 dB,匹配厚度为1.55 mm,在13.12中具有相对较宽的吸收带宽(RL <= 10 dB) -17.04 GHz范围。非常有趣的是,分层NiCo2O4-CoNiO2杂化体的电磁(EM)波吸收性能显示出对Co2 + / Co3 +比的依赖性。在所有样品中,煅烧后的NiCo2O4-CoNiO2杂化物在450℃下的最大缺陷浓度具有最佳的EM波吸收能力。结果表明,杂化材料中各组成部分之间的适当相互作用可以指导我们设计和制造高效的EM波吸收材料。

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