| Literature DB >> 31501674 |
Arnault Heynderickx1, Sébastien Nénon1, Olivier Siri1, Vladimir Lokshin1, Vladimir Khodorkovsky1.
Abstract
The synthesis and properties of 1,2,3,4-tetrahydro-1,4,5,8-tetraazaanthracene (Entities:
Keywords: X-ray structures; aromaticity; density functional calculations; heterocycles; hydrogen bonds
Year: 2019 PMID: 31501674 PMCID: PMC6720741 DOI: 10.3762/bjoc.15.203
Source DB: PubMed Journal: Beilstein J Org Chem ISSN: 1860-5397 Impact factor: 2.883
Figure 1Quinoxaline derivatives 1–3.
Scheme 1Synthesis of THTTA (3).
Scheme 2Protonation, alkylation and acylation of 3.
Experimental and calculated selected bond lengths (Å).
| Compound | Bond | Experimentala | Calculated |
| C1–N2 | 1.367 | 1.391 | |
| C1–C14 | 1.371 | 1.376 | |
| C13–C14 | 1.405 | 1.411 | |
| C13–N12 | 1.363 | 1.355 | |
| C11–N12 | 1.327 | 1.317 | |
| C1–C6 | 1.445 | 1.441 | |
| C8–C13 | 1.425 | 1.430 | |
| C1–N2 | 1.335 | 1.329 | |
| C1–C14 | 1.384 | 1.398 | |
| C13–C14 | 1.389 | 1.381 | |
| C13–N12 | 1.345 | 1.357 | |
| C11–N12 | 1.370 | 1.361 | |
| C1–C6 | 1.469 | 1.477 | |
| C8–C13 | 1.441 | 1.459 | |
| C1–N2 | 1.342 | 1.352 | |
| C1–C6 | 1.378 | 1.393 | |
| C5–C6 | 1.403 | 1.393 | |
| C5–N4 | 1.365 | 1.371 | |
| C2–N1 | 1.339 | 1.366 | |
| C2–C3 | 1.380 | 1.374 | |
| C3–C4 | 1.388 | 1.409 | |
| C4–N3 | 1.357 | 1.408 | |
| C1–C2 | 1.457 | 1.458 | |
| C4–C5 | 1.449 | 1.448 | |
aAveraged bond lengths for 3 and 6a.
Figure 2The ORTEP view of 3. Torsion angles within the benzene ring are given in red.
Figure 3The ORTEP view of 6a. Torsion angles within the benzene ring are given in red.
Figure 4The ORTEP view of 7a (the iodine counter anion has been omitted for clarity). Torsion angles within the benzene ring are given in red.
Scheme 3Charge transfer and delocalization within 3 and its diprotonated (6a) and monomethylated (7a) derivatives.
Figure 5Normalized absorption spectra of 3 in: toluene (black), acetone (blue), ethanol (green), water (red).
Figure 6Protonation of 3 in ethanol. Two isosbestic points (IBP) are indicated by arrows.
Figure 7Absorption spectra of 7a (blue) and 8 (red) in ethanol.
Figure 8Absorption spectra of 10a (black), 10b (red). Solid curves: in toluene, dashed curves: in acetone.
Figure 9View of the supramolecular array generated by 3 in the solid state. Color coding: nitrogen, blue; carbon, grey.
Figure 10View of the supramolecular array generated by 6a in the solid state. Color coding: nitrogen, blue; carbon, grey, chloride, green.
Figure 11View of the supramolecular array generated by 7a in the solid state. Color coding: nitrogen, blue; carbon, grey; iodine, violet.