Melt-Mixed 3D Hierarchical Graphene/Polypropylene Nanocomposites with Low Electrical Percolation Threshold

Нанокомпозиты графена и полипропилена с трехмерной иерархической структурой, полученные смешением в расплаве, с низким порогом электрической перколяции
Christian Müller, Aleksandar Matic, Roland Kádár, Karolina Gąska, Thomas Gkourmpis, Davide Tranchida, Antonis Gitsas
2019-12-11

electrical percolation thresholdgraphene/polypropylene nanocompositesisotactic polypropylenemelt mixingβ-phase suppression
Graphene-based materials are a family of carbonaceous structures that can be produced using a variety of processes either from graphite or other precursors. These materials are typically a few layered sheets of graphene in the form of platelets and maintain some of the properties of pristine graphene (such as two-dimensional platelet shape, aspect ratio, and graphitic bonding). In this work we present melt mixed graphene-based polypropylene systems with significantly reduced percolation threshold. Traditionally melt-mixed systems suffer from poor dispersion that leads to high electrical percolation values. In contrast in our work, graphene was added into an isotactic polypropylene matrix, achieving an electrical percolation threshold of ~1 wt.%. This indicates that the filler dispersion process has been highly efficient, something that leads to the suppression of the β phase that have a strong influence on the crystallization behavior and subsequent thermal and mechanical performance. The electrical percolation values obtained are comparable with reported solution mixed systems, despite the use of simple melt mixing protocols and the lack of any pre or post-treatment of the final compositions. The latter is of particular importance as the preparation method used in this work is industrially relevant and is readily scalable.
1
Electrical percolation values are comparable to solution-mixed systems without pre- or post-treatment of the composites.
2
Graphene incorporation suppresses the polypropylene β phase, which strongly influences crystallization and subsequent thermal and mechanical performance.
3
Melt-mixed graphene/isotactic polypropylene nanocomposites achieve an electrical percolation threshold of approximately 1 wt%.
4
The low percolation threshold indicates highly efficient graphene dispersion despite using simple melt-mixing protocols.
5
The melt-mixing preparation is industrially relevant and readily scalable.

Melt-mixed graphene/isotactic polypropylene nanocomposites

Electrical percolation threshold, filler dispersion, and the resulting β-phase suppression and effects on crystallization, thermal, and mechanical performance

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2019-12-11
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Authors
Christian Müller
Aleksandar Matic
Roland Kádár
Karolina Gąska
Thomas Gkourmpis
Davide Tranchida
Antonis Gitsas
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