Novel Graphene UHMWPE Nanocomposites Prepared by Polymerization Filling Using Single-Site Catalysts Supported on Functionalized Graphene Nanosheet Dispersions

Новые нанокомпозиты UHMWPE с графеном, полученные методом полимеризационного наполнения с использованием односайтовых катализаторов, нанесённых на дисперсии функционализированных графеновых нанослоёв
Markus Stürzel, Fabian Kempe, Yi Thomann, Stefan Mark, Markus Enders, Rolf Mülhaupt
2012-08-30

UHMWPE nanocompositesfunctionalized graphene nanosheetspolyethylene crystallization nucleationpolymerization filling techniquesingle-site chromium catalysts
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.
1
At only 1 wt% functionalized graphene, FG/UHMWPE simultaneously improved stiffness, elongation at break, and polyethylene crystallization nucleation.
2
Compared with carbon black, carbon nanotubes, graphite, and nanoboehmite, FG/MAO/Cr1 achieved the highest catalyst activities and excellent morphological control.
3
Integrating nanoparticle dispersions directly into polymerization reduced the special safety and handling precautions associated with conventional nanoparticle compounding.
4
Polymerization filling produced UHMWPE nanocomposites with uniformly dispersed functionalized graphene nanosheets.
5
Surface hydroxyl groups enabled functionalized graphene to disperse in n-heptane and support immobilization of an MAO-activated chromium single-site catalyst.

Functionalized graphene nanosheet/UHMWPE nanocomposites prepared by polymerization filling

The effects of uniformly dispersed functionalized graphene nanosheets on UHMWPE stiffness, elongation at break, polyethylene crystallization nucleation, catalyst activity, and composite morphological control

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2012-08-30
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Markus Stürzel
Fabian Kempe
Yi Thomann
Stefan Mark
Markus Enders
Rolf Mülhaupt
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