Resum
We demonstrate the benefits of using cofacial Zn–porphyrins as structural synthons in coordination-driven self-assembled prisms to produce cage-like singlet oxygen (1O2) photosensitizers with tunable properties. In particular, we describe the photosensitizing and emission properties of palladium- and copper-based supramolecular capsules, and demonstrate that the nature of the bridging metal nodes in these discrete self-assembled prisms strongly influences 1O2 generation at the Zn–porphyrin centers. The PdII-based prism is a particularly robust photosensitizer, whereas the CuII self-assembled prism is a dormant photosensitizer that could be switched to a ON state upon disassembly of the suprastructure. Furthermore, the well-defined cavity within the prisms allowed encapsulation of pyridine-based ligands and fullerene derivatives, which led to a remarkable guest tuning of the 1O2 production.
| Idioma original | Anglès |
|---|---|
| Pàgines (de-a) | 4371-4381 |
| Nombre de pàgines | 11 |
| Revista | Chemistry - A European Journal |
| Volum | 24 |
| Número | 17 |
| DOIs | |
| Estat de la publicació | Data de publicació - 20 de març 2018 |
Fingerprint
Navegar pels temes de recerca de 'Self-Assembled Cofacial Zinc–Porphyrin Supramolecular Nanocapsules as Tuneable 1O2 Photosensitizers'. Junts formen un fingerprint únic.Com citar-ho
- APA
- Author
- BIBTEX
- Harvard
- Standard
- RIS
- Vancouver