Mixed-Halide Triphenyl Methyl Radicals for Site-Selective Functionalization and Polymerization

29 July 2021, Version 2
This content is a preprint and has not undergone peer review at the time of posting.

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 chlo-ride-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 re-sulting 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.

Keywords

organic radical
stable radical
fluorescent radical
trityl
TTM
EPR
radical polymer
polyradical

Supplementary materials

Title
Description
Actions
Title
Supporting Information Mixed halide radicals
Description
Experimentals, Synthesis, NMR, IR spectra, MALDI-ToF, DFT results, photoluminescence decay, UV-Vis and photoluminescence spectra, EPR.
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