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Conducting polymers-NiFe2O4 coated on reduced graphene oxide sheets as electromagnetic (EM) wave absorption materials

机译:导电聚合物-NiFe2O4涂覆在还原的氧化石墨片上作为电磁(EM)吸波材料

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In this work, conducting polymers (polyaniline, polypyrrole and poly (3,4-ethylenedioxythiophene)) and NiFe2O4 coated on Reduced Graphene Oxide Sheets were successfully fabricated by a two-step method. The structure and morphology were characterized by several analytical techniques, including XRD, XPS, Raman, TEM and VSM. The microwave-absorbing properties of the composites were measured by a vector network analyzer. TEM photographs reveal that many NiFe2O4 nanoparticles with the sizes in the range of 5-20 nm firmly attached on the surface of RGO-CPs. The ternary composites have superparamagnetic character due to the presence of NiFe2O4 nanoparticles. The electromagnetic data demonstrates that the combination of graphene with conducting polymers and NiFe2O4 nanoparticles can improve the impedance matching, the 2D-structure RGO with large specific surface area improve the dielectric loss, the presence of CPs coating layer enhances the Debye dipole and dipole polarization enhances the dielectric loss. The maximum reflection loss of RGO-PANI-NiFe2O4, RGO-PPy-NiFe2O4 and RGO-PEDOT-NiFe2O4 are -49.7 dB, -44.8 dB and -45.4dB, the absorption bandwidths with the reflection losses below 10 dB are 5.3 GHz, 5.3 GHz and 3.7 GHz with a thickness of 2.4 mm, 1.7 mm and 2.0 mm, respectively. Such excellent microwave absorption composites could be used as a new kind of candidate for the new types of microwave absorbing materials. (C) 2016 Elsevier B.V. All rights reserved.
机译:在这项工作中,通过两步法成功地制备了涂覆在还原石墨烯氧化板上的导电聚合物(聚苯胺,聚吡咯和聚(3,4-乙撑二氧噻吩))和NiFe2O4。通过几种分析技术对结构和形态进行了表征,包括XRD,XPS,拉曼,TEM和VSM。通过矢量网络分析仪测量复合材料的微波吸收性能。 TEM照片显示,许多大小为5-20 nm的NiFe2O4纳米颗粒牢固地附着在RGO-CP的表面上。由于存在NiFe2O4纳米颗粒,三元复合材料具有超顺磁性。电磁数据表明,石墨烯与导电聚合物以及NiFe2O4纳米粒子的组合可以改善阻抗匹配,具有大比表面积的2D结构RGO可以改善介电损耗,CPs涂层的存在可以增强Debye偶极子,并且偶极子极化可以增强介电损耗。 RGO-PANI-NiFe2O4,RGO-PPy-NiFe2O4和RGO-PEDOT-NiFe2O4的最大反射损耗为-49.7 dB,-44.8 dB和-45.4dB,反射损耗低于10 dB时的吸收带宽为5.3 GHz,5.3 GHz和3.7 GHz,厚度分别为2.4毫米,1.7毫米和2.0毫米。这种优异的微波吸收复合材料可作为新型微波吸收材料的新型候选材料。 (C)2016 Elsevier B.V.保留所有权利。

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