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Epitaxial crystallization of precisely bromine-substituted polyethylene induced by carbon nanotubes and graphene

机译:碳纳米管和石墨烯诱导的精确溴取代的聚乙烯的外延结晶

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摘要

Precisely substituted polyethylenes have well-defined primary structures and aggregation architecture. Herein, precisely bromine-substituted polyethylene (PE21Br) was chosen as an ideal model to investigate the substituent impact on epitaxial crystallization upon one-dimensional carbon nanotubes (CNT) and two-dimensional reduced graphene oxide (RGO) via solution crystallization. The abilities of different dimensional nanofillers to induce ordered chain packing structures were compared. Transmission electron microscopy (TEM) images showed that kebab-like and rod-like nanofiller-induced crystals were separately observed on the surfaces of CNT and graphene, and selected area electron diffraction (SAED) pattern revealed that the c-axis of the polymer chain was parallel to the surface of RGO. Fast-scan differential scanning calorimetry (Flash DSC) revealed that the melting points of the crystals grown on CNT and graphene were increased by 19 and 99?°C, respectively. More importantly, X-ray diffraction (XRD) suggested that CNT and RGO induced the transition of the crystal structure of PE21Br from the triclinic to orthorhombic form, but with different orderness. More ordered lattice structures and higher melting temperatures of PE21Br/RGO nanocomposites are ascribed to the perfect lattice matching between PE21Br and RGO. This study not only provides a method for fabricating bromine-functionalized polyolefin nanocomposites, but is also anticipated to open up a new opportunity for improving the service temperature of substituted polyethylene by means of epitaxial crystallization.
机译:精确取代的聚乙烯具有明确的一级结构和聚集结构。在此,精确选择溴取代的聚乙烯(PE21Br)作为理想模型,以研究取代基对一维碳纳米管(CNT)和二维氧化石墨烯(RGO)通过溶液结晶。比较了不同尺寸的纳米填料诱导有序链堆积结构的能力。透射电子显微镜(TEM)图像显示在CNT和石墨烯的表面分别观察到烤肉串状和棒状纳米填料诱导的晶体,并且选择区域电子衍射(SAED)模式显示 c 轴平行于RGO的表面。快速扫描差示扫描量热法(Flash DSC)显示,在CNT和石墨烯上生长的晶体的熔点分别增加了19和99°C。更重要的是,X射线衍射(XRD)表明CNT和RGO诱导了PE21Br晶体结构从三斜晶向正交晶的转变,但是顺序不同。 PE21Br / RGO纳米复合材料具有更高的晶格结构和更高的熔化温度,归因于PE21Br和RGO之间的完美晶格匹配。这项研究不仅提供了一种制备溴官能化聚烯烃纳米复合材料的方法,而且还有望为通过外延结晶提高取代聚乙烯的使用温度提供新的机会。

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