Microporous, tetraarylethylene-based polymer networks generated in a reductive polyolefination process

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Abstract

Microporous Polymer Networks (MPNs) that contain aggregate-induced emission (AIE) active tetraphenylethylene (TPE) or other tetraarylethylene units have been generated in a reductive polyolefination process starting from four different tris(α,α-dichlorobenzyl)arene derivatives with dicobalt octacarbonyl or chromium(ii)acetate as reductive olefination agents. Microporosity with moderately high BET surface areas up to 500 m 2 g -1 could be combined with high solid state photoluminescence quantum yields up to 25.3% for polymer network P4. This unique combination should be promising for applications as optical solid state sensors, especially for MPNs with electron-deficient triazine core units.

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Preis, E., Dong, W., Brunklaus, G., & Scherf, U. (2015). Microporous, tetraarylethylene-based polymer networks generated in a reductive polyolefination process. Journal of Materials Chemistry C, 3(7), 1582–1587. https://doi.org/10.1039/c4tc02664k

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