| Literature DB >> 33826212 |
Johannes H Harenberg1, Niels Weidmann1, Alexander J Wiegand1, Carla A Hoefer1, Rajasekar Reddy Annapureddy1, Paul Knochel1.
Abstract
We report the on-demand generation of hexane-soluble (2-ethylhexyl)sodium (1) from 3-(chloromethyl)heptane (2) using a sodium-packed-bed reactor under continuous flow conditions. Thus, the resulting solution of 1 is free of elemental sodium and therefore suited for a range of synthetic applications. This new procedure avoids the storage of an alkylsodium and limits the handling of metallic sodium to a minimum. (2-Ethylhexyl)sodium (1) proved to be a very useful reagent and undergoes in-line Br/Na-exchanges as well as directed sodiations. The resulting arylsodium intermediates are subsequently trapped in batch with various electrophiles such as ketones, aldehydes, Weinreb-amides, imines, allyl bromides, disulfides and alkyl iodides. A reaction scale-up of the Br/Na-exchange using an in-line electrophile quench was also reported.Entities:
Keywords: Br/Na-exchange; directed sodiation; flow chemistry; packed-bed reactor; sodium
Year: 2021 PMID: 33826212 PMCID: PMC8252725 DOI: 10.1002/anie.202103031
Source DB: PubMed Journal: Angew Chem Int Ed Engl ISSN: 1433-7851 Impact factor: 15.336
Scheme 1a) Generation of neopentylsodium in batch and its use in halogen/sodium‐exchange reactions. b) On‐demand continuous flow generation of (2‐ethylhexyl)sodium (1) and subsequent in‐line Br/Na‐exchange and directed metalation.
Figure 1From left to right: (2‐Ethylhexyl)sodium (1) in hexane prepared in batch over metallic sodium, 5 min after addition of 2. (2‐Ethylhexyl)sodium (1) in hexane prepared via a sodium‐packed‐bed reactor, 5 min after collecting. (2‐Ethylhexyl)sodium (1) in hexane prepared via a packed‐bed sodium reactor, 18 h after collecting.
On‐demand preparation of alkylsodium reagent 1 from alkyl chloride 2 followed by Br/Na‐exchange on aryl bromides of type 3 leading to arylsodiums of type 4 and subsequent batch quench with electrophiles of type 5 leading to products of type 6.
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Yields of analytically pure products. [a] From the Weinreb‐amide [b] 2.0 equiv E‐X were used. [c] From the allyl bromide with addition of 50 mol % CuCN⋅2 LiCl. [d] From the disulfide.
On‐demand preparation of alkylsodium reagent 1 from alkyl chloride 2 followed by Br/Na‐exchange on heteroaryl bromides of type 7 leading to heteroarylsodiums of type 8 and subsequent batch quench with electrophiles of type 5 leading to products of type 9.
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Yields of analytically pure products. [a] From the Weinreb‐amide. [b] 2.0 equiv E‐X were used. [c] From the disulfide. [d] From racemic α‐ionone.
Scheme 2Scale‐up of the Br/Na‐exchange reaction using 2‐bromopyridine (7 a), (2‐ethylhexyl)sodium (1) as exchange reagent and benzophenone (5 a) as electrophile, applying in‐line quenching conditions.
On‐demand preparation of alkylsodium reagent 1 from alkyl chloride 2 followed by directed metalation of (hetero)arenes of type 10 leading to (hetero)arylsodiums of type 11 and subsequent batch quench with electrophiles of type 5 leading to products of type 12.
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Yields of analytically pure products. [a] From the Weinreb‐amide. [b] 2.0 equiv E‐X were used [c] From the disulfide. [d] From the alkyl iodide.