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
2012-08-30
SCID: 54.1/cakesf3d
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UHMWPE nanocompositesfunctionalized graphene nanosheetspolyethylene crystallization nucleationpolymerization filling techniquesingle-site chromium catalysts
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Abstract (AI)
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.
Key Findings
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.
Research Object
Functionalized graphene nanosheet/UHMWPE nanocomposites prepared by polymerization filling
Research Subject
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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