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Suzuki coupling

Palladium inserts into the aryl-halide bond, the boron hands its carbon to the metal, and the two organic groups are joined as the metal lets go.

mechanism writtenBalanced: every atom is accounted for

What it needs, and what it gives

Reaction class
Cross-coupling
Typical conditions
A palladium source and a base, in aqueous or alcoholic solvent, warm. The base is not optional: the boron will not give up its carbon without it.
Mass balance
balanced — the co-products are written out, not dropped
Mechanism
Suzuki coupling (catalytic cycle), 3 steps

Conditions are what the literature ordinarily uses, recorded so you can see whether yours are in the usual range. They are not a procedure and they are not scaled to your flask.

How it is thought to happen

The metal inserts into the aryl-halide bond, the boron hands over its carbon, and the two groups on the metal join and leave together.

  1. The metal inserts into the aryl-halide bond
  2. The boron hands its carbon to the metal
  3. The two groups are joined and the metal lets go

This is the pathway taught for the class, not a record of what was observed. On the platform it is drawn on the structures you supply, with the curly arrows on the atoms that actually move.

Try it on your own structures

Enter your reactants in the Reaction Lab. If this transformation matches what you drew, it is applied and the outcome is shown next to the records that back it — with the count of documented reactions doing the same thing on substrates like yours, rather than a confidence score.