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Structure and Properties of Multiwall Carbon Nanotubes/Polystyrene Composites Prepared via Coagulation Precipitation Technique

机译:多壁碳纳米管/聚苯乙烯复合材料的结构与性能通过凝固沉淀技术制备

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摘要

Coagulation technique was applied for preparation of multiwall carbon nanotube- (MWNT-)containing polystyrene (PSt) composite materials with different MWNT loading (0.5–10 wt.%). Scanning and transmission electron microscopies were used for investigation of the morphology and structure of produced composites. It was shown that synthesis of MWNT/PSt composites using coagulation technique allows one to obtain high dispersion degree of MWNT in the polymer matrix. According to microscopy data, composite powder consists of the polystyrene matrix forming spherical particles with diameter ca. 100–200 nm, and the surface of MWNT is strongly wetted by the polymer forming thin layer with 5–10 nm thickness. Electrical conductivity of MWNT/PSt composites was investigated using a four-probe technique. Observed electrical percolation threshold of composite materials is near to 10 wt.%, mainly due to the insulating polymer layer deposited on the surface of nanotubes. Electromagnetic response of prepared materials was investigated in broadband region (0.01–4 and 26–36 GHz). It was found that MWNT/PSt composites are almost radiotransparent for low frequency region and possess high absorbance of EM radiation at higher frequencies.
机译:凝血技术用于制备含有不同MWNT载荷(0.5-10重量%)的聚苯乙烯(PST)复合材料的多壁碳纳米管(MWNT-)的制备。扫描和透射电子显微镜用于研究制作复合材料的形态和结构。结果表明,使用凝固技术的合成MWNT / PST复合材料允许人们在聚合物基质中获得高分子的MWNT。根据显微镜数据,复合粉末由聚苯乙烯基质组成,形成具有直径Ca的球形颗粒。通过形成5-10nm厚的聚合物形成薄层,MWNT的表面强烈地润湿了100-200nm。使用四探针技术研究了MWNT / PST复合材料的电导率。观察到的复合材料的电渗透阈值接近10重量%。%,主要是由于沉积在纳米管表面上的绝缘聚合物层。在宽带区(0.01-4和26-36GHz)中研究了制备材料的电磁响应。结果发现,MWNT / PST复合材料几乎是低频区域的辐射术,并且在较高频率下具有高吸收声辐射的吸光度。

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