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Polymer composites prepared by low-temperature post-irradiation polymerization of C2F4 in the presence of graphene-like material: synthesis and characterization

机译:在石墨烯样材料存在下通过C2F4的低温后辐照聚合制备的聚合物复合材料:合成与表征

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摘要

Polymer polytetrafluoroethylene (PTFE)-microwave exfoliated graphene oxide (MEGO) composites containing up to 80 wt% PTFE were prepared by low-temperature post-irradiation polymerization of C2F4 in the presence of the graphene-like material. Composites were characterized by FTIR, NMR, XPS, SEM, TGA, XRD, broadband dielectric spectroscopy and DSC techniques. The melting point of PTFE in the composite (332.5 degrees C) was higher than that of pure PTFE by 8.8 degrees C. The measured values of the melting enthalpy (Delta H-m = 51.5 and 45.4 J g(-1)) were used to calculate the extent of crystallinity in the PTFE and PTFE-MEGO composite (0.63 and 0.55, respectively). No CF3 end groups typical of commercial PTFE have been detected in the PTFE-MEGO composites.
机译:通过在石墨烯状材料的存在下对C 2 F 4进行低温后辐照聚合来制备包含至多80 wt%PTFE的聚合物聚四氟乙烯(PTFE)-微波剥离氧化石墨烯(MEGO)复合材料。通过FTIR,NMR,XPS,SEM,TGA,XRD,宽带介电谱和DSC技术对复合材料进行了表征。复合材料中的PTFE熔点(332.5摄氏度)比纯PTFE的熔点高8.8摄氏度。熔融焓的测量值(ΔHm= 51.5和45.4 J g(-1))用于计算PTFE和PTFE-MEGO复合材料的结晶度(分别为0.63和0.55)。在PTFE-MEGO复合材料中未检测到商用PTFE典型的CF3端基。

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