| Literature DB >> 28413765 |
Kirara Yamaguchi1, Toshiaki Murai1, Shoichi Kutsumizu1, Yohei Miwa1, Masahiro Ebihara1, Jing-Dong Guo2, Norihiro Tokitoh2.
Abstract
Chemical or electrochemical one-electron oxidation of 5-N-arylaminothiazoles was found to afford stable radical cations. For chemical oxidation, 1 equivalent ofEntities:
Keywords: absorption spectroscopy; electron paramagnetic resonance; heterocycles; oxidation; radical ions
Year: 2017 PMID: 28413765 PMCID: PMC5390811 DOI: 10.1002/open.201700016
Source DB: PubMed Journal: ChemistryOpen ISSN: 2191-1363 Impact factor: 2.911
Scheme 15‐N‐Arylaminothiazoles 1–4.
Scheme 2Reactions between thiazole 1 and BF2CF3 ⋅OEt, NO[SbF6], and [(4‐BrC6H4)3N][SbCl6] (Magic Blue).
Figure 1Absorption spectra of a) 1–4 and b) 1+MB to 4+MB in CH2Cl2, [solute]=1×10−4 M.
UV/Vis absorption spectra of thiazoles 1–4 with MB.[a]
| Thiazole | λabs [nm] | Species | λabs [nm] |
|---|---|---|---|
|
| 364 |
| 900, 650, 466 |
|
| 358 |
| 918, 726, 506 |
|
| 382 |
| 932, 768, 590, 480 |
|
| 410 |
| 1180, 1006, 760, 522 2726, 1474, 796, 456 |
[a] In CH2Cl2, [solute]=1×10−4 m.
Figure 2Time‐dependent absorption spectra of 1 after application of 1.04 V in CH2Cl2; [1]=1×10−4 m, 0.1 m [nBu4N][ClO4]; scan rate=100 mV s−1; reference electrode: Ag/AgCl, counter electrode: Pt, and working electrode: Pt gauze.
Figure 3Observed EPR spectra of a) 1, c) 2, e) 3, and g) 4 with 1 equivalent of MB, as well as that of i) 4 with 3 equivalents of MB; the spectra in panels b, d, f, h, and j are the corresponding simulated spectra. Signals marked with arrows in panels a, c, e, g, and i represent the Mn2+ marker.
EPR data of solutions of thiazoles 1–4 with MB.[a]
| Thiazole | MB [equiv] |
|
|
|
|---|---|---|---|---|
|
| 1 | 2.0030 | 0.72 | 91 |
|
| 1 | 2.0031 | 0.63 | 74 |
|
| 1 | 2.0034 | 0.78 | 385 |
|
| 1 | 2.0033 | 0.64 (one N atom) 0.34 (two N atom) 0.29 (eight H atom) | 3 |
| 3 | 2.0044 | 0.43 |
[a] In CH2Cl2 (distilled from P2O5), [solute]=1×10−4 m. The g and A N values were determined from spectral simulations. [b] Calculated by integrating the area of the EPR signals, normalized to the peak height of the signals from the Mn2+ marker as g standard.
Figure 4Mulliken spin‐density map for the radical cation of 1 calculated at the B3LYP/6‐31+G(d)/PCM(CH2Cl2) level of theory.