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Electrical, thermal and mechanical properties of iodine-doped highly elongated ultrahigh molecular weight polyethylene films filled with multiwalled carbon nanotubes

机译:碘掺杂高度细长的超高分子量聚乙烯薄膜的电气,热和力学性能填充有多壁碳纳米管

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Highly elongated ultrahigh molecular weight polyethylene (UHMWPE) films filled with multiwalled carbon nanatubes (MWNTs) prepared by gelation/crystallization from solution, were doped by iodine. The electrical conductivity of iodine-doped MWNTs-UHMWPE film was about two to four orders of magnitude higher than that of original films, and the conductivity became stable and orderly in the temperature range of 25°C to 150°C after iodine- doping. Raman spectrum results indicated that the doped iodine as (I<'-><,5>) existed in the drawn MWNTs-UHMWPE film, which leaded to an increase in the electrical conductivity. The iodine-doping caused the decrease in the crystallinity of UHMWPE, which is confirmed by differential scanning calorimetry. The storage modulus of the doped film was still kept as high as that of the original film. At the room temperature, the storage modulus of the iodine-doped film reached 42GPa.
机译:高度细长的超高分子量聚乙烯(UHMWPE)填充有通过从溶液中凝胶化/结晶制备的多壁碳纳米管(MWNT)的薄膜,掺杂碘。碘掺杂MWNTS-UHMWPE膜的电导率大约比原始薄膜高约两到四个数量级,并且在碘掺杂后,电导率在25℃至150℃的温度范围内变得稳定且有序。拉曼光谱结果表明,掺杂的碘作为(I < - > <,5>)中存在于拉伸的MWNTS-UHMWPE膜中,这导致导电性的增加。碘掺杂导致UHMWPE的结晶度降低,这通过差示扫描量热法确认。掺杂膜的储存模量仍然保持高于原始膜的储存模量。在室温下,碘掺杂膜的储存模量达到42GPa。

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