Benzo[ c ][1,2,5]Thiadiazole Linkers Enhance the Effectiveness of Cavity‐Containing Supramolecular Photocatalysts
Leonardo Amicosante, Dominic Taylor, Cameron L. Campbell, Daniel M. Lambden, Georgina M. Rosair, Filipe Vilela, Scott J. DalgarnoABSTRACT
A family of seven novel supramolecular photosensitizers comprising benzo[ c ][1,2,5]thiadiazole ( BTZ ) tethered calix[4]arene (C[4]) scaffolds has been synthesized using cross‐coupling strategies with selectively halogenated C[4]s, affording target compounds in high yield using facile purification. Their respective abilities to produce singlet oxygen has been evaluated through the photo‐oxidation of α ‐terpinene, and structure–activity relationships established, probing factors such as cavity:photosensitizer ratio, distance of cavity to photosensitizer linker, and steric hindrance around the upper‐rim of the cavity. The presence of two C[4] cavities proximal to the photosensitizing BTZ unit provided vastly increased effectiveness in enhancing effective concentration through host:guest interactions, resulting in an eightfold increase in efficiency for the best‐performing member of the compound library benchmarked against a small‐molecule analogue, and reaching reaction completion in 1 h at 2.5 mol% loading. In contrast, systematically increasing the cavity:photosensitizing linker distance led to a reduction in improvement to 1.1‐fold relative to the small molecule analogue, confirming that these factors are pivotal in designing a suitable system based on the guest substrate.