| Literature DB >> 26124887 |
Vladimir A Azov1, Diana Janott1, Dirk Schlüter1, Matthias Zeller2.
Abstract
An Ullmann-type coupling reaction was employed for the preparation of several N-arylated monopyrrolotetrathiafulvalenes with variable substitution patterns. Spectroscopic and electrochemical properties of the coupling products strongly depend on the electronic nature of the aromatic substituents due to their direct conjugation with the tetrathiafulvalene chromophore. The crystal packing of the arylated monopyrrolotetrathiafulvalenes is primarily defined by networks of C-H···X weak hydrogen bonds and short S···S contacts involving the tetrathiafulvalene moieties.Entities:
Keywords: N-arylation; Ullmann-type coupling; X-ray crystallography; cyclic voltammetry; pyrrolotetrathiafulvalene
Year: 2015 PMID: 26124887 PMCID: PMC4464400 DOI: 10.3762/bjoc.11.96
Source DB: PubMed Journal: Beilstein J Org Chem ISSN: 1860-5397 Impact factor: 2.883
Figure 1Molecular structures of tetrathiafulvalenes 1, bis-pyrrolotetrathiafulvalenes 2 and monopyrrolotetrathiafulvalenes 3.
Scheme 1The two synthetic approaches used for the preparation of arylated monopyrrolotetrathiafulvalenes 1.
Scheme 2Synthesis of arylated monopyrrolotetrathiafulvalenes 4a–f.
Figure 2Copper(I) ligands 9a and 9b.
Figure 3UV–vis spectra of compounds 4a,c–f (CH2Cl2, c = 4 × 10−5 M).
Electrochemical data.a
| Compound | |||
| 0.47 | 0.84 | – | |
| 0.48 | 0.83 | – | |
| 0.40 | 0.84 | – | |
| 0.55 | 0.92 | – | |
| 0.46 | 0.84 | 1.06 | |
| 0.47 | 0.86 | 1.76 (irrev.) | |
aData were obtained using a one-compartment cell in CH2Cl2/0.1 M Bu4NClO4, Pt as the working and counter electrodes and a non-aqueous Ag/Ag+ reference electrode; scan rate 100 mV/s. Values given at room temperature vs SCE; the Fc/Fc+ couple (0.480 V vs SCE) was used as an internal reference [30].
Figure 4Cyclic voltammograms of compounds 4a,c [22] and 4d–f (plotted vs SCE; CH2Cl2/0.1 M Bu4NClO4).
Angles (°) between the planes of the aromatic ring and neighbouring pyrrole ring in 4a,b,d,e.
| Compound | Molecule1 | Molecule 2 |
| 3.41 | 3.42 | |
| 3.69 | 12.20 | |
| 1.36 | 10.68 | |
| 13.72 | 17.28 | |