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首页> 外文期刊>Macromolecules >Novel graphene UHMWPE nanocomposites prepared by polymerization filling using single-site catalysts supported on functionalized graphene nanosheet dispersions
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Novel graphene UHMWPE nanocomposites prepared by polymerization filling using single-site catalysts supported on functionalized graphene nanosheet dispersions

机译:通过使用功能化石墨烯纳米片分散体上负载的单中心催化剂进行聚合填充制备的新型石墨烯UHMWPE纳米复合材料

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Novel families of ultrahigh-molecular-weight polyethylene (UHMWPE) nanocomposites, containing uniformly dispersed, functionalized graphene (FG) nanosheets, were prepared by means of the polymerization filling technique (PFT). Unparalleled by any other carbon and boehmite nanocomposites, FG/UHMWPE exhibited an unusual simultaneous improvement in stiffness, elongation at break, and effective nucleation of polyethylene crystallization at only 1 wt % FG content. FG nanosheets are ultrathin-with a thickness of only one carbon atom and lateral dimensions of several micrometers. Owing to the presence of surface hydroxyl groups on the FG, single FG/methylaluminoxane (MAO) nanosheets can be effectively dispersed in n-heptane, thus enabling immobilization of an MAO-activated chromium (Cr1) single-site catalyst on FG. In contrast to nanometer-scale carbon black (CB), multiwall carbon nanotubes (CNT), graphite, and nanoboehmite, which failed to form stable dispersions, FG/MAO/Cr1 afforded the highest catalyst activities and excellent morphological control. In polymerization filling, the integration of a nanoparticle dispersion into the polymerization process eliminated the need for special safety and handling precautions typically required by conventional compounding of nanoparticles with ultralow bulk densities.
机译:通过聚合填充技术(PFT)制备了新的超高分子量聚乙烯(UHMWPE)纳米复合材料家族,其中包含均匀分散的功能化石墨烯(FG)纳米片。 FG / UHMWPE是其他碳和勃姆石纳米复合材料所无法比拟的,在FG含量仅为1 wt%的情况下,其刚度,断裂伸长率和聚乙烯结晶的有效成核表现出不同寻常的同时提高。 FG纳米片超薄-仅具有一个碳原子的厚度,横向尺寸为几微米。由于FG上存在表面羟基,因此单个FG /甲基铝氧烷(MAO)纳米片可以有效地分散在正庚烷中,从而使MAO活化的铬(Cr1)单中心催化剂固定在FG上。与无法形成稳定的分散体的纳米级炭黑(CB),多壁碳纳米管(CNT),石墨和纳米勃姆石相比,FG / MAO / Cr1提供了最高的催化剂活性和出色的形态控制。在聚合填充中,将纳米颗粒分散体整合到聚合过程中,消除了对特殊安全性和处理预防措施的需求,而这些通常是常规配混具有超低堆积密度的纳米颗粒通常需要的。

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