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What is the Fukuyama Reduction?

The Fukuyama reduction delivers an aldehyde directly from a thioester, using a silane (typically Et3SiH) as the hydride source and a palladium catalyst to activate the Cโ€“S bond. It is the reductive counterpart of the Fukuyama cross-coupling โ€” the same thioester activation strategy, but the incoming nucleophile is hydride instead of an organozinc.

Stopping cleanly at the aldehyde oxidation state is the main selling point: classical hydride reductions (DIBAL-H on esters, for example) require carefully controlled low-temperature conditions to avoid over-reduction to the alcohol, whereas the Pd/silane system is comparatively mild, functional-group tolerant, and scales well without cryogenic conditions.

Reaction schemes

Fukuyama Reduction โ€” general reaction scheme
Fukuyama Reduction โ€” general reaction scheme
Fukuyama Reduction โ€” catalytic cycle mechanism
Fukuyama Reduction โ€” catalytic cycle mechanism

Catalytic cycle

Step 1

Oxidative addition

Pd(0) inserts into the C(acyl)โ€“S bond of the thioester.

Step 2

Silane activation / hydride transfer

The silane delivers a hydride to the acyl-palladium intermediate.

Step 3

Reductive elimination

The aldehyde is released and Pd(0) is regenerated.

Applications

Worked examples

Every example below โ€” reagents, conditions, and literature source โ€” is reproduced from Cross-Coupling Reactions: Mechanisms and Examples by Marcos San Segundo, PhD.

Example 1

Fukuyama reduction on proline.

Scheme for Fukuyama reduction on proline. โ€” Fukuyama Reduction
Ref. [1]
Example 2
Scheme for Example 2 โ€” Fukuyama Reduction
Ref. [2]
Example 3
Scheme for Example 3 โ€” Fukuyama Reduction
Ref. [3]
Example 4

Total synthesis of (+)-leinamycin 32 using the Fukuyama reduction.

Scheme for Total synthesis of (+)-leinamycin 32 using the Fukuyama reduction. โ€” Fukuyama Reduction
Ref. [4]
Cross-Coupling Reactions: Mechanisms and Examples book cover
Textbook ยท Organic Chemistry

Cross-Coupling Reactions: Mechanisms and Examples

This page covers the Fukuyama Reduction โ€” one of 21 named reactions in the book, each with its full catalytic cycle and every worked example shown here, drawn straight from the primary literature.

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References

[1]
Tokuyama, H.; Yokoshima, S.; Lin SC, Li. L.; Fukuyama, T. Synthesis. 2002, 1121.
[2]
Miyazaki, T.; Han-ya, Y.; Tokuyama, H.; Fukuyama, T. Synlett. 2004, 477.
[3]
Kimura, M.; Seki, M. Tetrahedron Lett. 2004, 45, 3219.
[4]
Kanda, Y.; Fukuyama, T. J. Am. Chem. Soc. 1993, 115, 8451.

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