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Cercosporin-Photocatalyzed [4+1]- and [4+2]-Annulations of Azoalkenes Under Mild Conditions
Published on: July 17, 2020
Dibenzazepine Bridged Network Polymeric Phthalocyanines as Degradable Heterogeneous Photocatalysts
Erem Ahmetali1,2,3, Azra Kocaarslan4, Vanessa Trouillet5,6
1Institute of Biological and Chemical Systems - Functional Molecular Systems (IBCS-FMS), Karlsruhe Institute of Technology (KIT), Kaiserstraße 12, 76131, Karlsruhe, Germany.
Abstract:
Recyclability and energy efficiency are inevitable requirements in today´s synthetic materials, as well as functional efficiency. Network polymeric phthalocyanines (NP-Pcs) are versatile molecular frameworks which widely utilized in energy and electron transfer demanding applications, but light hasn´t played a role before in their "design and degradation". Herein, we introduce photodynamic dibenzazepine moiety into NP-Pcs to obtain degradable heterogeneous photocatalysts (NP-ZnPc and NP-CoPc). Singlet oxygen generation efficiency of NP-ZnPc is found to be high, almost completely quenching the absorbance of diphenylisobenzofuran (DPBF) within 30 s upon red light (λ = 630 nm) irradiation. Supplementary reactions show that NP-ZnPc has the capability to oxidize methylphenyl sulfide with 100% yield in 4 h reaction time. Subsequently, PET-RAFT polymerization of 2-hydroxyethyl methacrylate is successfully initiated by NP-ZnPc in the presence of a chain transfer agent upon red light (λ = 647 nm) irradiation. The linearity in the increase in molecular weight (14,400-21,200 g/mol) and the decrease in monomer concentration (ln([M]0/[M]t = 0.6-3.4) demonstrate the living characteristic of PET-RAFT polymerization. Thanks to its heterogeneous nature, NP-ZnPc is readily recovered and reused after polymerization up to three consecutive cycles without significant loss of performance. Notably, complete degradation of NP-Pcs was achieved under 254 nm light irradiation.
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