| Literature DB >> 35859625 |
Jan H Griwatz1,2, Anne Kunz1,2, Hermann A Wegner1,2.
Abstract
Azobenzene, as one of the most prominent molecular switches, is featured in many applications ranging from photopharmacology to information or energy storage. In order to easily and reproducibly synthesize non-symmetric substituted azobenzenes in an efficient way, especially on a large scale, the commonly used Baeyer-Mills coupling reaction was adopted to a continuous flow setup. The versatility was demonstrated with a scope of 20 substances and the scalability of this method exemplified by the synthesis of >70 g of an azobenzene derivative applied in molecular solar thermal storage (MOST) systems.Entities:
Keywords: Baeyer–Mills reaction; azobenzenes; continuous flow; molecular switches; solar fuel
Year: 2022 PMID: 35859625 PMCID: PMC9263553 DOI: 10.3762/bjoc.18.78
Source DB: PubMed Journal: Beilstein J Org Chem ISSN: 1860-5397 Impact factor: 2.544
Scheme 1Baeyer–Mills reaction of AB (1a) involving nucleophilic attack of aniline (2a) to nitrosobenzene (3).
Figure 1Flow setup for optimization of the Baeyer–Mills reaction with aniline (2a) and nitrosobenzene (3). In this setup the temperature of the tube reactor as well as the residence time can be individually varied (Figure 2).
Figure 2Optimization of the Baeyer–Mills reaction of nitrosobenzene (3) with aniline (2a) to AB (1a). The numbers in the figure result from the ratio of the integral of the HPLC peak of AB (1a) to the integral of AB (1a), nitrosobenzene (3), and aniline (2a) at a wavelength of 254 nm (see Supporting Information File 1 for details).
Figure 3Flow setup after prior optimization with unsubstituted aniline (2a) and nitrosobenzene (3) to AB (1a).
Substrate scope of the Baeyer–Mills reaction under the optimized conditions in continuous flow.
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| entry | aniline |
product |
yield [%] |
|
|
|||
| 1 |
|
|
98 |
| 2 |
|
|
89 |
| 3 |
|
|
77 |
| 4 |
|
|
94 |
| 5 |
|
|
79 |
| 6 |
|
|
67 |
| 7 |
|
|
>99 |
| 8 |
|
|
96 |
| 9 |
|
|
7 |
| 10 |
|
|
72 |
| 11 |
|
|
23 |
| 12 |
|
|
65 |
| 13 |
|
|
70 |
| 14 |
|
|
99 |
| 15 |
|
|
7 |
| 16 |
|
|
54 |
| 17 |
|
|
68 |
| 18 |
|
|
33 |
| 19 |
|
|
95 |
aPurified by chromatography.
Scheme 2Large-scale synthesis of AB 1t from aniline 2t and nitrosobenzene (3) in >99% yield within 3 days.