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具有可调谐电磁梯度的多层次结构聚己内酯复合材料,用于吸收主导的电磁干扰屏蔽。

Multi-hierarchically Structural Polycaprolactone Composites with Tunable Electromagnetic Gradients for Absorption-Dominated Electromagnetic Interference Shielding.

机构信息

School of Materials Science and Engineering, Xihua University, Chengdu 610039, People's Republic of China.

出版信息

Langmuir. 2023 May 2;39(17):6038-6050. doi: 10.1021/acs.langmuir.3c00056. Epub 2023 Apr 17.

DOI:10.1021/acs.langmuir.3c00056
PMID:37067489
Abstract

Achieving absorption-dominated electromagnetic interference (EMI) shielding composites with high shielding effectiveness (SE) remains a great challenge due to their minimization of secondary EM radiation pollution, which is highly desired for next-generation electronic devices. Herein, an ingenious approach is proposed to develop asymmetric hierarchical polycaprolactone (PCL) composites composed of an impedance matching layer and a conductive layer through the combination of alternate casting and electroless plating methods, while the polarization loss caused by the difference in conductivity between the two layers would further attenuate the EM waves. The gradient distribution of the shielding fillers creates a positive conductive gradient and a negative magnetic gradient; the higher the gradient, the more it induces magnetic and dielectric losses, which results in an enhanced absorption mechanism that could overcome the restrictions of the nonadjustable reflective properties. The obtained FeO@rGO/Ni/Ag/PCL composite possesses a remarkable EMI SE of 47.6 dB, while the power coefficient of reflectivity () could be significantly reduced to 0.27. This research provides a feasible strategy for developing absorption-dominated shielding materials with tunable EM performance that are appropriate for the next generation of electronic devices.

摘要

由于需要将二次电磁辐射污染最小化,实现吸收主导的电磁干扰 (EMI) 屏蔽复合材料具有高屏蔽效能 (SE) 仍然是一个巨大的挑战,这对于下一代电子设备来说是非常需要的。在此,通过交替浇铸和化学镀方法的结合,提出了一种巧妙的方法来开发由阻抗匹配层和导电层组成的不对称分层聚己内酯 (PCL) 复合材料,而由于两层之间导电性的差异引起的极化损耗将进一步衰减电磁波。屏蔽填料的梯度分布产生了正的导电梯度和负的磁梯度;梯度越高,诱导磁损耗和介电损耗的能力越强,从而增强了吸收机制,可以克服反射性能不可调节的限制。所获得的 FeO@rGO/Ni/Ag/PCL 复合材料具有显著的 EMI SE 为 47.6 dB,而反射率的功率系数 () 可以显著降低至 0.27。这项研究为开发具有可调电磁性能的吸收主导屏蔽材料提供了一种可行的策略,适用于下一代电子设备。

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