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首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Repeatable, room-temperature-processed baroplastic-carbon nanotube composites for electromagnetic interference shielding
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Repeatable, room-temperature-processed baroplastic-carbon nanotube composites for electromagnetic interference shielding

机译:可重复的,室温处理的碳塑料 - 碳纳米管复合材料,用于电磁干扰屏蔽

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摘要

Polymers with low energy consumption from synthesis to processing have received great attention due the energy crisis and environmental problems. Nevertheless, traditional polymer processing always involves high temperature and multiple processing, which result in property deterioration, low recycling ability and high energy consumption. Herein, we synthesized a poly(n-butyl acrylate)@polystyrene (PBA@PS) core-shell polymer with a low glass transition temperature (T-g) of -40 degrees C for the PBA component and a high T-g of 109 degrees C for the PS component. This core-shell polymer is a typical baroplastic, which was employed as a composite matrix. Carbon nanotubes (CNT) were introduced into PBA@PS to develop a highly conductive CNT/PBA@PS composite for efficient electromagnetic interference (EMI) shielding application. As a result of the semi-solid melting mechanism of PBA@PS, the CNT/PBA@PS composite was facilely processed at room temperature (25 degrees C), and interestingly, the composite established a typical segregated structure. The segregated CNT networks endowed the composite with a high EMI shielding effectiveness (EMI SE) of 45.1 dB at 5.0 wt% CNT loading. More importantly, the composite exhibited outstanding repeatability and durability after multiple processing, in sharp contrast to conventional polymer composites. Its mechanical properties after 10-cycle remolding were almost identical to the first-molded specimens, and meanwhile, the EMI SE retention of 62.5% was achieved, which is much higher than that of conventional polymer composites. Our work demonstrated the successful utilization of a baroplastic as a polymer matrix to design functional polymer composites, showing the significant potential advantages of energy saving and sustainability over conventional polymer composites.
机译:由于能源危机和环境问题,综合能量消耗量低的能量消耗低的聚合物受到极大的关注。然而,传统的聚合物加工始终涉及高温和多重加工,导致性能劣化,低收回能力和高能耗。在此,我们合成了具有-40℃的低玻璃化转变温度(Tg)的聚(正丁基丙烯酸酯)的核 - 壳聚合物,对于PBA组分,高TG为109℃ PS组件。该核 - 壳聚合物是典型的羧塑料,其用作复合基质。将碳纳米管(CNT)引入PBA @ PS中,以开发用于有效电磁干扰(EMI)屏蔽应用的高导电CNT / PBA @ PS复合材料。由于PBA @ PS的半固体熔融机制,CNT / PBA @ PS复合物在室温(25℃)下,并且有趣地建立了典型的隔离结构。分离的CNT网络以5.0wt%CNT载荷为45.1dB的高EMI屏蔽效果(EMI SE)赋予复合材料。更重要的是,复合材料在多次加工后表现出优异的重复性和耐久性,与常规聚合物复合材料鲜明对比。其机械性能在10周期重折叠后几乎与第一模塑试样相同,同时,实现了62.5%的EMI SE保留,远高于常规聚合物复合材料。我们的作品证明了以聚合物基质为设计功能性聚合物复合材料的成功利用,显示出节能和可持续性对常规聚合物复合材料的显着潜在优点。

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