| Literature DB >> 29094947 |
Michel Rickhaus1, Andreas Vargas Jentzsch1, Lara Tejerina1, Isabell Grübner1, Michael Jirasek1, Timothy D W Claridge1, Harry L Anderson1.
Abstract
The synthesis of ethyne-linked porphyrin nanorings has been achieved by template-directed Sonogashira coupling. The cyclic hexamer and octamer are predicted by density functional theory to adopt low symmetry conformations, due to dihedral twists between neighboring porphyrin units, but their symmetries are effectively D6h and D8h, respectively, in solution by 1H NMR. The fluorescence spectra indicate that the singlet excited states of these nanorings are highly delocalized.Entities:
Year: 2017 PMID: 29094947 PMCID: PMC5719470 DOI: 10.1021/jacs.7b10710
Source DB: PubMed Journal: J Am Chem Soc ISSN: 0002-7863 Impact factor: 15.419
Figure 1(a) Types of linear porphyrin–porphyrin connection. Zn–Zn distances and dihedral angles θ (measured from the carbon atoms indicated by blue circles from density functional theory (DFT)-optimized geometries). (b–e) Calculated geometries of P6, P6·T6, P8 and P8·(T4). Two orthogonal views are shown for each structure. Solubilizing aryl groups and hydrogen atoms are omitted for clarity. (B3LYP/6-31G*; see SI for details.).
Scheme 1Synthesis of -P8 and -P6
Reaction conditions: (a) 2, Pd2dba3, PPh3, CuI, PhMe/i-Pr2NH (2:1), 50 °C, 15 h, 13%; (b) TBAF, CH2Cl2, 25 °C, 10 min, 79%; (c) T4, Pd2dba3, PPh3, CuI, PhMe/i-Pr2NH (10:1), 40 °C, 2 d, 32%; (d) SEC pyridine/PhMe (1:1), 99%; (e) 1, Pd(PPh3)4, PPh3, CuI, PhMe/i-Pr2NH (2:1), 50 °C, 15 h, 30%; (f) TBAF, CH2Cl2, 25 °C, 10 min, 95%; (g) T6, Pd(PPh3)4, PPh3, CuI, PhMe/i-Pr2NH (2:1), 40 °C, 16 h, 15%; (h) SEC (pyridine/PhMe 1:1), 99%. Ar: 1,3-bis(trihexylsilyl)phenyl. Syntheses of 1, 2, 3, T4 and T6 are outlined in the SI.
Figure 2Steady-state absorption (continuous lines) and fluorescence (dashed) spectra at 295 K of -P6 in toluene/1% pyridine, -P6·T6 in toluene and -P6 in toluene/1% pyridine. Quantum yields are given in %. The apparent dip in the fluorescence spectra at 1140 nm is due to absorption by the solvent.