Confined acids catalyze asymmetric single aldolizations of acetaldehyde enolates

Reactions that form a product with the same reactive functionality as that of one of the starting compounds frequently end in oligomerization. As a salient example, selective aldol coupling of the smallest, though arguably most useful, enolizable aldehyde, acetaldehyde, with just one partner substra...

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Veröffentlicht in:Science (American Association for the Advancement of Science) 2018-10, Vol.362 (6411), p.216-219
Hauptverfasser: Schreyer, Lucas, Kaib, Philip S J, Wakchaure, Vijay N, Obradors, Carla, Properzi, Roberta, Lee, Sunggi, List, Benjamin
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Sprache:eng
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Zusammenfassung:Reactions that form a product with the same reactive functionality as that of one of the starting compounds frequently end in oligomerization. As a salient example, selective aldol coupling of the smallest, though arguably most useful, enolizable aldehyde, acetaldehyde, with just one partner substrate has proven to be extremely challenging. Here, we report a highly enantioselective Mukaiyama aldol reaction with the simple triethylsilyl (TES) and -butyldimethylsilyl (TBS) enolates of acetaldehyde and various aliphatic and aromatic acceptor aldehydes. The reaction is catalyzed by recently developed, strongly acidic imidodiphosphorimidates (IDPi), which, like enzymes, display a confined active site but, like small-molecule catalysts, have a broad substrate scope. The process is scalable, fast, efficient (0.5 to 1.5 mole % catalyst loading), and greatly simplifies access to highly valuable silylated acetaldehyde aldols.
ISSN:0036-8075
1095-9203
DOI:10.1126/science.aau0817