Clean chlorination of silica surfaces by a single-site substitution approach

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Abstract

A chlorination method for the selective substitution of well-defined isolated silanol groups of the silica surface has been developed using the catalytic Appel reaction. Spectroscopic analysis, complemented by elemental microanalysis studies, reveals that a quantitative chlorination could be achieved with highly dehydroxylated silica materials that exclusively possess non-hydrogen bonded silanol groups. The employed method did not leave any carbon or phosphorus residue on the silica surface and can be regarded as a promising tool for the future functionalization of metal oxide surfaces.

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Maity, N., Barman, S., Abou-Hamad, E., D’Elia, V., & Basset, J. M. (2018). Clean chlorination of silica surfaces by a single-site substitution approach. Dalton Transactions, 47(12), 4301–4306. https://doi.org/10.1039/c8dt00186c

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