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What is the Stille Cross-Coupling?

The Stille coupling joins an organostannane (R–SnBu3) with an aryl or vinyl halide or triflate under palladium catalysis. Organotin reagents are directly nucleophilic enough to transmetalate onto palladium without needing an added base or activator, which makes the reaction unusually mild and tolerant of base-sensitive functionality β€” a real practical advantage over Suzuki or Negishi couplings in some settings.

The trade-off is toxicity: organotin compounds and their byproducts are more hazardous than the boron or zinc reagents used elsewhere, and residual tin can be difficult to remove during purification. Those concerns have pushed much of modern practice toward Suzuki or Hiyama coupling wherever they are viable substitutes, but the Stille coupling remains valuable for substrates and transformations where it is still the most reliable option.

Reaction schemes

Stille Cross-Coupling β€” general reaction scheme
Stille Cross-Coupling β€” general reaction scheme
Stille Cross-Coupling β€” catalytic cycle mechanism
Stille Cross-Coupling β€” catalytic cycle mechanism

Catalytic cycle

Step 1

Oxidative addition

Pd(0) inserts into the Ar–X bond of the halide or triflate.

Step 2

Transmetalation

The organostannane transfers its organic group directly to palladium(II), without needing an external base.

Step 3

Reductive elimination

The new C–C bond forms and Pd(0) is regenerated.

Applications

Worked examples

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

Example 1

Coupling between a vinyl stannate and an aryl bromide.

Scheme for Coupling between a vinyl stannate and an aryl bromide. β€” Stille Cross-Coupling
Ref. [1]
Example 2

Coupling between an acyl chloride and a heteroaryl stannate.

Scheme for Coupling between an acyl chloride and a heteroaryl stannate. β€” Stille Cross-Coupling
Ref. [2]
Example 3

Coupling between an aliphatic stannate and a vinyl iodide.

Scheme for Coupling between an aliphatic stannate and a vinyl iodide. β€” Stille Cross-Coupling
Ref. [3]
Example 4

Stereoselective Stille coupling.

Scheme for Stereoselective Stille coupling. β€” Stille Cross-Coupling
Ref. [4]
Example 5

An intramolecular Stille coupling for the synthesis of Rapamycin.

Scheme for An intramolecular Stille coupling for the synthesis of Rapamycin. β€” Stille Cross-Coupling
Ref. [5]
Example 6

Key step for the synthesis of (+)-mycotrienin I.

Scheme for Key step for the synthesis of (+)-mycotrienin I. β€” Stille Cross-Coupling
Ref. [6]
Cross-Coupling Reactions: Mechanisms and Examples book cover
Textbook Β· Organic Chemistry

Cross-Coupling Reactions: Mechanisms and Examples

This page covers the Stille Cross-Coupling β€” 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]
Chandrasoma, N.; Brown, N.; Brassfield, A.; Nerurkar, A.; Suarez, S.; Buszek, K. R. Tetrahedron Lett. 2013, 54, 913.
[2]
Lerebours, R.; Camacho-Soto, A.; Wolf, C. J. Org. Chem. 2005, 70, 8601.
[3]
Goli, M.; He, A.; Falck, J. R. Org. Lett. 2011, 13, 344.
[4]
Li, L.; Wang, C. Y.; Huang, R. et al. Nature Chem. 2013, 5, 607.
[5]
Smith III, A. B.; Condon, S. M.; McCaudaley, J. A.; Leazer, J. L.; Leahy, J. W.; Malezczka Jr., R. E. J. Am. Chem. Soc. 1995, 117, 5407.
[6]
Masse, C. E.; Yang, M.; Solomon, J.; Panek, J. S. J. Am. Chem. Soc. 1998, 120, 4123.

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