Ma Li, Hamidinejad Mahdi, Zhao Biao, Liang Caiyun, Park Chul B
Department of Mechanical and Industrial Engineering, University of Toronto, 5 King's College Road, Toronto, ON, M5S 3G8, Canada.
Institute for Manufacturing, Department of Engineering, University of Cambridge, Cambridge, CB3 0FS, UK.
Nanomicro Lett. 2021 Dec 7;14(1):19. doi: 10.1007/s40820-021-00759-4.
Lightweight, high-efficiency and low reflection electromagnetic interference (EMI) shielding polymer composites are greatly desired for addressing the challenge of ever-increasing electromagnetic pollution. Lightweight layered foam/film PVDF nanocomposites with efficient EMI shielding effectiveness and ultralow reflection power were fabricated by physical foaming. The unique layered foam/film structure was composed of PVDF/SiCnw/MXene (TiCT) composite foam as absorption layer and highly conductive PVDF/MWCNT/GnPs composite film as a reflection layer. The foam layer with numerous heterogeneous interfaces developed between the SiC nanowires (SiCnw) and 2D MXene nanosheets imparted superior EM wave attenuation capability. Furthermore, the microcellular structure effectively tuned the impedance matching and prolonged the wave propagating path by internal scattering and multiple reflections. Meanwhile, the highly conductive PVDF/MWCNT/GnPs composite (~ 220 S m) exhibited superior reflectivity (R) of 0.95. The tailored structure in the layered foam/film PVDF nanocomposite exhibited an EMI SE of 32.6 dB and a low reflection bandwidth of 4 GHz (R < 0.1) over the Ku-band (12.4 - 18.0 GHz) at a thickness of 1.95 mm. A peak SE of 3.1 × 10 dB was obtained which corresponds to only 0.0022% reflection efficiency. In consequence, this study introduces a feasible approach to develop lightweight, high-efficiency EMI shielding materials with ultralow reflection for emerging applications.
为应对日益严重的电磁污染挑战,人们迫切需要轻质、高效且低反射的电磁干扰(EMI)屏蔽聚合物复合材料。通过物理发泡制备了具有高效EMI屏蔽效能和超低反射功率的轻质层状泡沫/薄膜聚偏氟乙烯(PVDF)纳米复合材料。独特的层状泡沫/薄膜结构由作为吸收层的PVDF/SiC纳米线(SiCnw)/MXene(TiCT)复合泡沫和作为反射层的高导电性PVDF/多壁碳纳米管(MWCNT)/石墨烯纳米片(GnPs)复合薄膜组成。在SiC纳米线(SiCnw)和二维MXene纳米片之间形成的具有大量异质界面的泡沫层赋予了优异的电磁波衰减能力。此外,微孔结构通过内部散射和多次反射有效地调节了阻抗匹配并延长了波传播路径。同时,高导电性的PVDF/MWCNT/GnPs复合材料(~220 S/m)表现出0.95的优异反射率(R)。层状泡沫/薄膜PVDF纳米复合材料的定制结构在Ku波段(12.4 - 18.0 GHz)厚度为1.95 mm时,EMI屏蔽效能(SE)为32.6 dB,低反射带宽为4 GHz(R < 0.1)。获得了3.1×10 dB的峰值SE,对应仅0.0022%的反射效率。因此,本研究引入了一种可行的方法来开发用于新兴应用的具有超低反射的轻质、高效EMI屏蔽材料。