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首页> 外文期刊>ACS applied materials & interfaces >Preparation and Electromagnetic Properties of Core/Shell Polystyrene@Polypyrrole@Nickel Composite Microspheres
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Preparation and Electromagnetic Properties of Core/Shell Polystyrene@Polypyrrole@Nickel Composite Microspheres

机译:核/壳型聚苯乙烯@聚吡咯@镍复合微球的制备及电磁性能

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摘要

Through a novel method, we successfully synthesized electromagnetic (EM) functional polystyrene@polypyrrole@nickel (PS@PPy@Ni) composite microspheres. The PS@PPy spheres with well-defined core/shell structure have been synthesized via an in situ chemical oxidative copolymerization of pyrrole (Py) and N-2-carboxyethylpyrrole (PyCOOH) templated by PS microspheres. The reaction was carried out under heterophase conditions using the mixture of ethanol and water as the continuous phase. Tailored by the carboxyl groups on the surface of microspheres, magnetic nickel layer has been steady deposited onto the P(Py-PyCOOH) layer of the microspheres through an activation-electroless plating technology. The fine PS@P(Py-PyCOOH)@Ni core/shell structures could be obtained with the PyCOOH content up to 50 wt % in the P(Py-PyCOOH) layer. Moreover, the as-prepared PS@P(Py-PyCOOH)@Ni composites are ferromagnetic materials and behave as a good electromagnetic (EM) absorption material due to the coating of Ni layer around the PS@P(Py-PyCOOH) spheres. The PS@P(Py-PyCOOH)@Ni composite spheres show the remarkable EM wave absorption property with the maximum reflection loss (around -20.06 dB) at 10.69 GHz. The EM wave absorption can retained lower than -10 dB within a broad frequency range from 9.16 to 13.75 GHz.
机译:通过一种新颖的方法,我们成功地合成了电磁功能的聚苯乙烯@聚吡咯@镍(PS @ PPy @ Ni)复合微球。具有良好定义的核/壳结构的PS @ PPy球是通过PS微球模板化的吡咯(Py)和N-2-羧乙基吡咯(PyCOOH)进行原位化学氧化共聚而合成的。反应在异相条件下使用乙醇和水的混合物作为连续相进行。根据微球表面的羧基量身定制,磁性镍层已通过活化化学镀技术稳定地沉积在微球的P(Py-PyCOOH)层上。可以获得精细的PS @ P(Py-PyCOOH)@Ni核/壳结构,其中P(Py-PyCOOH)层中的PyCOOH含量高达50 wt%。此外,所制备的PS @ P(Py-PyCOOH)@Ni复合材料是铁磁性材料,并且由于PS @ P(Py-PyCOOH)球周围的Ni涂层而表现为良好的电磁(EM)吸收材料。 PS @ P(Py-PyCOOH)@Ni复合球在10.69 GHz处表现出显着的EM波吸收特性,并具有最大的反射损耗(约-20.06 dB)。在9.16至13.75 GHz的宽频率范围内,EM波吸收可保持低于-10 dB。

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