Mapping Photochemical Reactivity Profiles on Surfaces

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Author(s)
Michalek, Lukas
Krappitz, Tim
Mundsinger, Kai
Walden, Sarah L
Barner, Leonie
Barner-Kowollik, Christopher
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2020
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Abstract

Herein, we introduce a comprehensive methodology to map the reactivity of photochemical systems on surfaces. The reactivity of photoreactive groups in solution often departs from their corresponding solution absorption spectra. On surfaces, the relationship between the surface absorption spectra and reactivity remains unexplored. Thus, herein, the reactivity of an o-methylbenzaldehyde and a tetrazole, as ligation partners for maleimide functionalized polymers, was investigated when the reactive moieties are tethered to a surface. The ligation reaction of tetrazole functionalized surfaces was found to proceed rapidly leading to high grafting densities, while o-methylbenzaldehyde functionalized substrates required longer irradiation times and resulted in lower surface coverage at the same wavelength (330 nm). Critically, wavelength resolved reactivity profiles were found to closely match the surface absorption spectra, contrary to previously reported red shifts in solution for the same chromophores.

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Journal of the American Chemical Society

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142

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52

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Distributed under the terms of the Creative Commons Attribution-NonCommercial 4.0 International License, which permits unrestricted, non-commercial use, distribution and reproduction in any medium, providing that the work is properly cited.

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Chemical sciences

Engineering

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Michalek, L; Krappitz, T; Mundsinger, K; Walden, SL; Barner, L; Barner-Kowollik, C, Mapping Photochemical Reactivity Profiles on Surfaces, Journal of the American Chemical Society, 2020, 142 (52), pp. 21651-21655

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