The preservation of sarin and O,O′-diisopropyl fluorophosphate inside coordination cage hosts

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Abstract

The host-guest chemistry of O,O′-diisopropyl fluorophosphate (DFP), a phosphonofluoridate G-series chemical warfare agent simulant, was investigated in the presence of a number of octanuclear cubic coordination cage hosts. The aim was to demonstrate cage-catalysed hydrolysis of DFP at near neutral pH: however, two octanuclear coordination cages, HPEG (containing water-solubilising PEG groups) and HW (containing water-solubilising hydroxymethyl groups), were actually found to increase the lifetime of DFP in aqueous buffer solution (pH 8.7). Crystallographic analysis of DFP with a structurally related host cage revealed that DFP binds to windows in the cage surface, not in the internal cavity. The phosphorus-fluorine bond is directed into the cavity rather than towards the external environment, with the cage/DFP association protecting DFP from hydrolysis. Initial studies with the chemical warfare agent (CWA) sarin (GB) with HPEG cage in a buffered solution also showed a drastically reduced rate of hydrolysis for sarin when bound in the host cage. The ability of these cages to inhibit hydrolysis of these P-F bond containing organophosphorus guests, by encapsulation, may have applications in forensic sample preservation and analysis.

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Dorrat, J. C., Young, R. J., Taylor, C. G. P., Tipping, M. B., Blok, A. J., Turner, D. R., … Tuck, K. L. (2023). The preservation of sarin and O,O′-diisopropyl fluorophosphate inside coordination cage hosts. Dalton Transactions, 52(34), 11802–11814. https://doi.org/10.1039/d3dt01378b

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