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Enzymatically degradable EMI shielding materials derived from PCL based nanocomposites

机译:源自PCL纳米复合材料的可酶降解的EMI屏蔽材料

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摘要

In this study, two different types of multiwall carbon nanotubes (MWNTs) namely pristine (p-MWNTs) and amine functionalized (a-MWNTs) were melt-mixed with polycaprolactone (PCL) to develop biodegradable electromagnetic interference (EMI) shielding materials. The bulk electrical conductivity of the nanocomposites was assessed using broadband dielectric spectroscopy and the structural properties were evaluated using dynamic mechanical thermal analysis (DMTA). Both the electrical conductivity and the structural properties improved after the addition of MWNTs and were observed to be proportional to the increasing fractions in the nanocomposites. The shielding effectiveness of the nanocomposites was studied using a vector network analyzer (VNA) in a broad range of frequencies, X-band (8 to 12 GHz) and K-u-band (12 to 18 GHz) on toroidal samples. The shielding effectiveness significantly improved on addition of MWNTs, more in the case of p-MWNTs than in a-MWNTs. For instance, at a given fraction of MWNTs (3 wt%), PCL with p-MWNTs and a-MWNTs showed a shielding effectiveness of -32 dB and -29 dB, respectively. Moreover, it was observed that reflection was the primary mechanism of shielding at lower fractions of MWNTs, while absorption dominated at higher fractions in the composites. As one of the rationales of this work was to develop biodegradable EMI shielding materials to address the challenges concerning electronic waste, the effect of different MWNTs on the biodegradability of PCL composites was assessed through enzymatic degradation. The enzymatic degradation of the samples cut from the hot pressed films by bacterial lipase was investigated. It was noted that a-MWNTs exhibited almost similar degradation rate as the control PCL sample; however, p-MWNTs showed a slower degradation rate. This study demonstrates the potential use of PCL-MWNT composites as flexible, light weight and eco-friendly EMI shielding materials.
机译:在这项研究中,两种不同类型的多壁碳纳米管(MWNT),即原始(p-MWNTs)和胺官能化(a-MWNTs)与聚己内酯(PCL)熔融混合,以开发可生物降解的电磁干扰(EMI)屏蔽材料。使用宽带介电谱评估纳米复合材料的整体电导率,并使用动态机械热分析(DMTA)评估结构性能。添加MWNT后,电导率和结构性能均得到改善,并且观察到其与纳米复合材料中增加的分数成比例。使用矢量网络分析仪(VNA)在环形样品的X波段(8至12 GHz)和K-u波段(12至18 GHz)的较宽频率范围内研究了纳米复合材料的屏蔽效果。添加MWNT时,屏蔽效果显着提高,与p-MWNT相比,屏蔽效果要比a-MWNT更大。例如,在给定比例的MWNTs(3 wt%)下,具有p-MWNTs和a-MWNTs的PCL的屏蔽效果分别为-32 dB和-29 dB。此外,观察到反射是在低分子量碳纳米管中屏蔽的主要机理,而在复合材料中较高的吸收率下占主导。由于这项工作的基本原理之一是开发可生物降解的EMI屏蔽材料,以解决有关电子废物的挑战,因此通过酶促降解评估了不同MWNT对PCL复合材料生物降解性的影响。研究了由细菌脂肪酶对热压薄膜切下的样品的酶促降解作用。值得注意的是,a-MWNTs的降解率几乎与对照PCL样品相似。然而,p-MWNTs的降解速度较慢。这项研究证明了PCL-MWNT复合材料作为柔性,轻质和环保EMI屏蔽材料的潜在用途。

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