| Literature DB >> 25815080 |
Laurence Burroughs1, John Ritchie1, Mkhethwa Ngwenya1, Dilfaraz Khan1, William Lewis1, Simon Woodward1.
Abstract
1,4-Diols resulting from the double addition of ArCCLi (Ar = Ph, substituted phenyl, 2-thienyl) to ortho-C6H4(CHO)2 undergo cascades to tetracenes on simple admixture of LiHDMS, CS2 and MeI. Acene formation proceeds by [3,3]-sigmatropic rearrangement of xanthate anions followed by 6π electrocyclisations. The reactions are terminated by E2 or anionic Chugaev-type eliminations. Structural packing motifs and electronic properties are reported for the tetracenes.Entities:
Keywords: X-ray structures; allenes; anionic Chugaev rearrangement; anionic sigmatropic rearrangement; tetracene properties
Year: 2015 PMID: 25815080 PMCID: PMC4362017 DOI: 10.3762/bjoc.11.31
Source DB: PubMed Journal: Beilstein J Org Chem ISSN: 1860-5397 Impact factor: 2.883
Scheme 1Use of bis-allene intermediates 2 for rapid access to substituted tetracenes [14,16].
Scheme 2Proposed access to aryl substituted 5-thiolatotetracene derivatives.
Scheme 3Equilibration to meso species.
Optimisation of yield of tetracene 7a.a
| Run | Base | |||||
| 1 | NaH | 1:1.1 | −78 | 22 | 23 | 9 |
| 2 | NaH | 1:1.1 | −30 | 40 | 95 | – |
| 3 | NaH | 1:1.1 | −50 | 40 | 45 | 30 |
| 4 | NaH | 1:1.1 | 0 | 60 | 30 | 43 |
| 5 | LiHDMS | 1:1.1 | −50 | 40 | 39 | 38 |
| 7 | KHDMS | 1:1.1 | 0 | 60 | 9 | 50 |
| 8 | LiHDMS | 1:4 | 0 | 60 | 5b | 38 |
aUsing 8a (0.45 mmol) in THF (5.0 mL), with base (2.0 equiv), CS2 (3.0 equiv), MeI (8.0 equiv), see Supporting Information File 1 for details. bDetermined by NMR spectroscopy. cIsolated yields, except where noted.
Preparation of derivatives.a
| Compound | Precursor diol ( | R1 | R2 | Yield ( |
| 1.6:1.0 | H | H | 85 | |
| 1.9:1.0 | OMe | OMe | 47 | |
| 4.8:1.0 | CF3 | H | 56 | |
| 1.6:1.0 | F | H | 29 | |
| 1.0:1.1 | H | CF3 | 44 | |
| 1.0:1.2 | H | OMe | 38 | |
| 1.0:1.6 | H | 22 | ||
| 1.0:1.0 | – | – | 38 | |
| 1.0:2.0b | – | – | 50 | |
aFrom diol precursor (0.45 mmol) in THF (5.0 mL), with LiHDMS (2.0 equiv), CS2 (3.0 equiv), MeI (8.0 equiv), isolated yields. bEquivalent anti:syn ratio for 8j.
Scheme 4Competing reaction pathways.
Scheme 5Stacking motifs in 7a, d, f–h and j. Y = COSMe.
Electro-optic properties of 7a–j.
| Compound | E½ (ox.) [V]a | HOMO/ LUMO calcd. [eV]b | νmax (vis) [nm]c | ||
| +0.52 | −5.16/−2.51 | 287 | 2.27 | 2.65 | |
| +0.22 | −5.21/−2.57 | 297 | 2.23 | 2.63 | |
| +1.07 | −5.23/−2.93 | 297 | 2.18 | 2.60 | |
| +0.29 | −4.89/−2.36 | 296 | 2.09 | 2.55 | |
| +0.65 | −5.58/−2.96 | 286 | 2.27 | 2.62 | |
| +0.76 | −5.61/−2.98 | 290 | 2.24 | 2.63 | |
| +0.43 | −5.20/−2.69 | 290 | 2.28 | 2.51 | |
| +0.55 | −5.33/−2.69 | 289 | 2.26 | 2.65 | |
| +0.60 | −5.27/−2.32 | 283 | 2.49 | 2.95 | |
| +0.62 | −5.10/−2.40 | 283 | 2.36 | 2.70 | |
aBy cyclic voltammetry, referenced against Fc/Fc+. bDFT: Calculated with the B3LYP-6-31G(d,p) basis set using Gaussian 09 Rev.D.01. cIn CH2Cl2. dDetermined from the onset (Tauc) of the lowest energy visible absorption band.