Polymethylaluminoxane organic frameworks (sMAOF)-highly active supports for slurry phase ethylene polymerisation

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Abstract

A series of modified solid polymethylaluminoxane (sMAO) catalyst supports have been developed for slurry phase ethylene polymerisation, using aryl di-ol modifier groups. Characterisation using ICP-MS analysis, X-ray total scattering, SEM-EDX, diffuse FT-IR and solid state NMR spectroscopy shows that the organic linker groups are uniformly distributed in a proposed organic framework stucture we call a "sMAOF". When used as a support for rac-ethylene{bis(1-indenyl)} zirconium dichloride, (EBI)ZrCl2, these linker modified sMAOF materials provide a 40% enhancement in polymerisation activity with respect to unmodified sMAO: Activities of 163 × 103 and 116 × 103 kgPE molZr-1 h-1 at 80 °C for (EBI)ZrCl2 supported on sMAOF(1,4-HO(C6F4)OH) and sMAO, respectively. The observed activity increase is correlated with the higher BET surface area and increased porosity in the linker modified sMAOF activating support.

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Kilpatrick, A. F. R., Geddes, H. S., Turner, Z. R., Buffet, J. C., Goodwin, A. L., & O’Hare, D. (2021). Polymethylaluminoxane organic frameworks (sMAOF)-highly active supports for slurry phase ethylene polymerisation. Catalysis Science and Technology, 11(16), 5472–5483. https://doi.org/10.1039/d1cy00767j

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