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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Tuning of Shells in Trilaminar Core@Shell Nanocomposites in Controlling Electromagnetic Interference through Switching of the Shielding Mechanism
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Tuning of Shells in Trilaminar Core@Shell Nanocomposites in Controlling Electromagnetic Interference through Switching of the Shielding Mechanism

机译:Triilaminar核心@ Shell纳米复合材料中的壳体调谐控制电磁干扰通过切换屏蔽机构

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摘要

Fe3O4@SiO2@PPy core-shell nanocomposites were fabricated by the coating of SiO2 on Fe3O4 through base catalyzed hydrolysis of tetraethyl orthosilicate followed by encapsulation of polypyrrole (PPy). Subsequently, these trilaminar composites have been characterized by Fourier-transform infrared spectroscopy, X-ray diffraction, X-ray photoelectron spectroscopy, transmission electron microscopy, Brunauer-Emmett-Teller, superconducting quantum interference devices, and measurement of the total shielding efficiency in the frequency range of 2-8 GHz. Our findings showed the highest total shielding efficiency (similar to 32 dB) of Fe3O4@SiO2@PPy (Fe3O4@SiO2/ pyrrole wt/wt = 1:9) and followed reflection as the dominant shielding mechanism. Such performance was attributed to poor impedance matching between the PPy (conducting)/SiO2 (insulating) and high electrical conductivity of Fe3O4@SiO2@PPy. Alternatively, electromagnetic (EM) waves incident on the SiO2@PPy interface could also account for enhancing the total shielding efficiency of Fe3O4@SiO2@PPy because of multireflection/refraction. Our earlier work also showed excellent total shielding efficiency of Fe3O4@C@PANI nanocomposites, through absorption as the dominant shielding mechanism. These findings clearly suggest that EM interference shielding in Fe3O4@SiO2@PPy and Fe3O4@C@PANI trilaminar core@shell nanocomposites is controlled by tuning of the shells through switching of the mechanism.
机译:通过在Fe 3 O 4上通过碱催化水解的四乙基硅酸盐的碱催化水解,然后封装聚吡咯(PPY)来制造Fe3O4 @ SiO 2 @ SiO 2。随后,这些三柳醛复合材料的特征在于傅里叶变换红外光谱,X射线衍射,X射线光电子能谱,透射电子显微镜,BRONAUER-EMMETT-TEALER,超导量子干扰装置和测量总屏蔽效率2-8 GHz的频率范围。我们的研究结果显示出最高的总屏蔽效率(类似于32 dB)Fe3O4 @ SiO2 @ Ppy(Fe3O4 @ SiO2 /吡咯WT / WT / WT / WT = 1:9),然后作为主导屏蔽机制的反射。这种性能归因于PPY(导通)/ SiO2(绝缘)和Fe3O4 @ SiO2 @ PPY的高电导率之间的阻抗匹配。或者,发生在SiO2 @ PPY接口上的电磁(EM)波也可以考虑由于多端/折射,提高FE3O4 @ SiO2 @ SiO2的总屏蔽效率。我们之前的工作还显示出Fe3O4 @ C @ Pani纳米复合材料的优异良好屏蔽效率,通过吸收作为主导屏蔽机构。这些发现清楚地表明,通过通过切换机构调谐壳体来控制FE3O4 @ SiO2 @ SiO2 @ SiO2 @ PPY和FE3O4 @ C @ Pani TriLilaminar核心@ Shell纳米复合材料的EM干扰屏蔽。

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