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A highly efficient and heat-resistant electromagnetic interference shielding carbon nanotube/poly(phenylene sulfide) composite via sinter molding

机译:通过烧结成型高效和耐热的电磁干扰屏蔽碳纳米管/聚(亚苯基硫化物)复合材料

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摘要

The formation of segregated conductive networks is significantly important for achieving excellent electromagnetic interference (EMI) shielding performance in a conductive polymer composite. Nevertheless, the low melt viscosity of poly(phenylene sulfide) (PPS) would lead to intense diffusion between the conductive filler and PPS molecular chains, which disturbs the selective distribution of the conductive filler to form a segregated structure. Herein, sinter molding was first utilized to control the selective distribution of carbon nanotubes (CNTs) among the interfaces of PPS domains and facilely construct a segregated structure in the resultant CNT/PPS composite. The segregated CNT/PPS composite with only 5.0 wt% CNTs exhibits a very high electrical conductivity of 72.0 S m ~(?1) and EMI shielding effectiveness (EMI SE) of 49.6 dB. Our work provides insight into the development of highly efficient and heat resistant EMI shielding materials via a novel processing method.
机译:分离导电网络的形成对于在导电聚合物复合材料中实现优异的电磁干扰(EMI)屏蔽性能显着重要。 然而,聚(亚硫化物)(PPS)的低熔体粘度会导致导电填料和PPS分子链之间的强烈扩散,其扰流导电填料的选择性分布以形成隔离结构。 在此,首先使用烧结模塑以控制PPS结构域的界面中的碳纳米管(CNT)的选择性分布,并在所得CNT / PPS复合材料中施加分离结构。 仅具有5.0wt%CNT的分离的CNT / PPS复合材料表现出72.0s M〜(α1)的非常高的电导率和49.6 dB的EMI屏蔽有效性(EMI SE)。 我们的工作通过新的加工方法提供了对高效和耐热的EMI屏蔽材料的开发。

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