Graphene-Supported Dual-Site Catalysts for Preparing Self-Reinforcing Polyethylene Reactor Blends Containing UHMWPE Nanoplatelets and in Situ UHMWPE Shish-Kebab Nanofibers

Двухцентровые катализаторы на основе графена для получения самоупрочняющихся реакторных смесей полиэтилена, содержащих нанопластинки СВМПЭ и нанонити СВМПЭ типа «шиш-кебаб», формирующиеся in situ
Markus Stürzel, Yi Thomann, Markus Enders, Rolf Mülhaupt
2014-07-14

UHMWPE nanoplateletsethylene polymerizationgraphene-supported dual-site catalystspolyethylene reactor blendsshish-kebab nanofibers
The catalytic ethylene polymerization on dual-site catalysts, supported on functionalized graphene, enables nanostructure formation in polyethylene reactor blends by in situ formation of uniformly dispersed ultrahigh molecular weight polyethylene (UHMWPE) nanoplatelets and in situ formed aligned UHMWPE shish-kebab nanofibers. For tailoring bimodal molar mass distributions, the quinolylsilylcyclopentadienylchromium(III) complex (Cr-1), producing UHMWPE with M w > 3 × 10 6 g mol –1, is blended together with bisiminopyridine complexes of either chromium(III) (CrBIP), producing polyethylene (PE) wax (2 × 10 3 g mol –1 ), or iron(II) (FeBIP), producing PE with M w = 2.0 × 10 5 g mol –1 . Hence, the FeBIP/Cr-1 and CrBIP/Cr-1 molar ratios govern the PE/UHMWPE weight ratio without affecting the average molar mass of the individual PE fractions. In sharp contrast to conventional UHMWPE/PE reactor blends, the UHMWPE content is substantially increased up to 17 wt % without impairing melt processing. In the case of graphene-supported FeBIP/Cr-1, SEM and TEM analysis reveal that UHMWPE nanoplatelets are formed during polymerization. This is attributed to graphene-mediated mesoscopic shape replication. During injection molding, the UHMWPE nanoplatelets are transformed into aligned UHMWPE shish-kebab nanofibers, thus enabling efficient polyethylene matrix reinforcement.
1
Combining Cr-1 with CrBIP or FeBIP produces tailored bimodal molar-mass distributions while preserving the average molar mass of each polyethylene fraction.
2
Graphene-supported FeBIP/Cr-1 generates UHMWPE nanoplatelets through graphene-mediated mesoscopic shape replication; injection molding converts them into aligned reinforcing shish-kebab nanofibers.
3
Graphene-supported dual-site catalysts enable polyethylene reactor blends containing uniformly dispersed UHMWPE nanoplatelets and aligned in situ UHMWPE shish-kebab nanofibers.
4
The FeBIP/Cr-1 and CrBIP/Cr-1 molar ratios control the PE/UHMWPE weight ratio independently of the individual fraction molar masses.
5
UHMWPE content can reach 17 wt% without impairing melt processing, substantially exceeding conventional UHMWPE/PE reactor blends.

Graphene-supported dual-site catalyst–prepared polyethylene reactor blends containing UHMWPE nanoplatelets and in situ UHMWPE shish-kebab nanofibers

The formation, morphology, composition control, processing transformation, and reinforcing effect of UHMWPE nanostructures in polyethylene reactor blends

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2014-07-14
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Markus Stürzel
Yi Thomann
Markus Enders
Rolf Mülhaupt
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