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Room-Temperature Ferromagnetic Sr3YCo4O10+δ and Carbon Black-Reinforced Polyvinylidenefluoride Composites toward High-Performance Electromagnetic Interference Shielding

机译:室温铁磁性SR3YCO4O10 +δ和炭黑增强聚偏二氟化物复合材料,用于高性能电磁干扰屏蔽

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In this study, we fabricated composites of conducting carbon black (CB), room-temperature ferromagnetic Sr3YCo4O10+δ (SYCO) and polyvinylidenefluoride (PVDF) by the solution mixing and coagulation method for the first time. During the nucleation process of PVDF, the presence of SYCO and CB individually facilitates the crystallization of polar β and semipolar γ phases along with the nonpolar α phase in PVDF. The dc electrical conductivity of PVDF raised from 1.54 × 10–8 to 9.97 S/m with the addition of 30 wt % of CB, and it is nearly constant with respect to the SYCO content. The PVDF/CB/SYCO composites (PCS) possess high permittivity and its variation is in accordance with the content of polar phases in PVDF. Moreover, the complex permittivity and permeability spectra from 10 MHz to 1 GHz indicate that the dielectric loss dictates over magnetic loss in these composites. The electromagnetic interference shielding effectiveness (EMI SE) of PCS composites is higher than that of PVDF/CB and PVDF/SYCO composites in the 8.2–18 GHz region. Addition of SYCO in the PVDF/CB matrix enhances shielding by dominated absorption with minimal reflection. The analysis of the shielding mechanism suggests that in addition to conducting and magnetic losses due to CB and SYCO, respectively, the synergy among CB, SYCO, and PVDF promotes shielding by matching the input impedance to that of free space, enhancing multiple internal reflections from SYCO and subsequent absorption by CB, eddy current losses, dielectric damping losses, interfacial polarization losses, and so forth. These different mechanisms result in an enhanced EMI SE of 50.2 dB for the PCS-40 composite for a thickness of 2.5 mm.
机译:在本研究中,我们首次通过溶液混合和凝固方法制造了导电炭黑(Cb),室温铁磁Sr3 yCo4O10 +δ(Syco)和聚偏二氟化物(PVDF)的复合材料。在PVDF的成核过程中,Syco和Cb的存在可单独促进极性β和半极性γ相的结晶以及PVDF中的非极性α相。 PVDF的直流电导率从1.54×10-8升至9.97 s / m,加入30wt%的Cb,相对于Syco含量几乎是恒定的。 PVDF / CB / SYCO复合材料(PCS)具有高介电常数,其变化符合PVDF中极性相的含量。此外,10MHz至1GHz的复杂介电常数和渗透率光谱表明介电损耗在这些复合材料中对磁力损失决定。 PCS复合材料的电磁干扰屏蔽效果(EMI SE)高于8.2-18GHz区域中PVDF / CB和PVDF / SYCO复合材料的电磁干扰屏蔽效果(EMI SE)。在PVDF / CB矩阵中添加Syco通过用最小反射的主导吸收来增强屏蔽。屏蔽机构的分析表明,除了CB和SYCO引起的导电和磁力损失之外,CB,SYCO和PVDF之间的协同作用,通过将输入阻抗与自由空间的输入阻抗匹配,可以增强多个内部反射SYCO和随后的CB,涡流损耗,介电阻尼损耗,界面极化损耗等的吸收。这些不同的机制导致PCS-40复合材料50.2dB的增强型EMI SE,厚度为2.5mm。

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