Mixed-halide triphenyl methyl radicals for site-selective functionalization and polymerization

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Date
2021
Volume
11
Issue
44
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Publisher
London : RSC Publishing
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Abstract

Derivatives of the stable, luminescent tris-2,4,6-trichlorophenylmethyl (TTM) radical exhibit unique doublet spin properties that are of interest for applications in optoelectronics, spintronics, and energy storage. However, poor reactivity of the chloride-moieties limits the yield of functionalization and thus the accessible variety of high performance luminescent radicals. Here, we present a pathway to obtain mixed-bromide and chloride derivatives of TTM by simple Friedel–Crafts alkylation. The resulting radical compounds show higher stability and site-specific reactivity in cross-coupling reactions, due to the better leaving group character of the para-bromide. The mixed halide radicals give access to complex, and so far inaccessible luminescent open-shell small molecules, as well as polymers carrying the radical centers in their backbone. The new mixed-halide triphenyl methyl radicals represent a powerful building block for customized design and synthesis of stable luminescent radicals.

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Keywords
Chemical reactions, Chlorine compounds, Energy storage, Truck trailers, Building blockes, Cross coupling reactions, Friedel-Crafts alkylation, Functionalizations, Leaving groups, Radical compounds, Small molecules, Spin properties, Luminescence
Citation
Chen, L., Arnold, M., Blinder, R., Jelezko, F., & Kuehne, A. J. C. (2021). Mixed-halide triphenyl methyl radicals for site-selective functionalization and polymerization. 11(44). https://doi.org//10.1039/d1ra04638a
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CC BY-NC 3.0 Unported