Abstract
The enzymatic control of reaction rates and selectivity within confined pockets inspires the field of supramolecular catalysis. This study employs a porphyrin metal-organic cage (MOC 1) as a nanoreactor for the photocatalytic oxidation of sulfides. MOC 1 uniquely concentrates substrates within its confined cavity through supramolecular encapsulation of 4–6 sulfides in water, which significantly enhances reactivity and dictates selectivity. Under visible light, MOC 1 catalyses the oxidation of various sulfides to sulfoxides with high conversion and selectivity, effectively suppressing over-oxidation of the product. Mechanistic studies confirm that the reaction proceeds via a superoxide radical (O2•–) pathway initiated by photoinduced electron transfer from the cage. This work demonstrates how supramolecular host-guest chemistry can be harnessed to solve challenging reactivity and selectivity problems in photocatalysis, emulating enzymatic function.
| Original language | English |
|---|---|
| Pages (from-to) | 317-325 |
| Number of pages | 9 |
| Journal | Supramolecular Chemistry |
| Volume | 36 |
| Issue number | 9-12 |
| DOIs | |
| State | Published - 2025 |
Keywords
- Supramolecular chemistry
- host-guest chemistry
- metal-organic cages
- photocatalysis
- sulfide oxidation
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