| Literature DB >> 35875710 |
Mengjie Wang1, Lanping Dang1, Wan Xu1, Zhiying Ma1, Liuliu Shao1, Guangxia Wang1, Chunli Li1, Hua Wang1.
Abstract
2,5-Di(trimethylsilanyl)dithieno[2,3-b:3',2'-d]thiophene ((TMS)2-bb-DTT), 2,5-di(trimethylsilanyl)diseleno[2,3-b:3',2'-d]thiophene ((TMS)2-bb-DST), and 2,5-di(trimethylsilanyl)diseleno[2,3-b:3',2'-d] selenophene ((TMS)2-bb-DSS) were used as starting materials to synthesize three S-shaped double helicenes (i.e., DH-1, DH-2, and DH-3) through monobromination, formylation, the Wittig reaction, and double oxidative photocyclization. The photocyclization was a highly regioselective process. The molecular structures of DH-1 and DH-2 were confirmed by X-ray single-crystal analysis. Multiple intermolecular interactions, such as C-S, C-Se, S-S, S-Se, and Se-Se, were observed in the crystal packing structures of these compounds. Spectroscopic results and our previous work showed that the combination of molecular structure change and heteroatom replacement from S to Se could precisely modulate molecular energy levels.Entities:
Keywords: crystal structure; double helicene; regioselective synthesis; selenophene; thiophene
Year: 2022 PMID: 35875710 PMCID: PMC9273980 DOI: 10.3762/bjoc.18.81
Source DB: PubMed Journal: Beilstein J Org Chem ISSN: 1860-5397 Impact factor: 2.544
Figure 1Molecular structures of bull horn-shaped heteroacene 1, selenophene-based [7]helicene 2 and novel compound DH-3.
Scheme 1Synthetic route to S-shaped double helicenes DH-1–3.
Figure 2Five kinds of isomer structures of 5 and two kinds of possible oxidative photocyclization product structures of 6 and DH-1–3.
Figure 3Molecular structures and side view for DH-1 and DH-2. A and B are molecular structures for DH-1 and DH-2. C and D are side views for DH-1 and DH-2. Carbon, sulfur, selenium, and silicon atoms are depicted with thermal ellipsoids set at the 30% probability level and all hydrogen atoms are omitted for clarity.
Crystal parameters of helicenes DH-1 and DH-2.
| Compound | Dihedral angle |
Torsion angle |
Turn angle in-plane |
Helix climbs |
|
|
|
|||||
| [5]helicene | 25.00 | 38.64 | 231.1 | 0.932 | |
| [6]helicene | 50.61 | 64.38 | 273.6 | 2.424 | |
| [5]helicene | 25.01 | 37.27 | 230.9 | 0.879 | |
| [6]helicene | 48.16 | 64.12 | 279.3 | 2.462 | |
aDihedral angle between two terminal rings of helicene. bThe sum of the three ([5]helicene) or four ([6]helicene) distortion angles. cThe angle of turns in-plane. dInternal helix climb height.
Figure 4UV–vis absorption spectra of DH-1–3 in CH2Cl2 ([c] = 1 × 10−5 M).