I. Chataigner et al., Discovery of a new efficient chiral ligand for copper-catalyzed enantioselective Michael additions by high-throughput screening of a parallel library, CHEM-EUR J, 7(12), 2001, pp. 2628-2634
A combinatorial library of 125 chiral Schiff base ligands 5 was synthesized
with the use of solution-phase parallel synthesis and solid-phase extracti
on (SPE) techniques to scavenge excess reagents and reaction by-products an
d avoid chromatography. The synthetic methodology coupled five N-Boc-protec
ted beta -amino sulfonyl chlorides 1a-e with five different amines 2 f-j to
give 25 N-Boc sulfonamides 3, which were in turn deprotected and coupled w
ith five salicylaldehydes 4p-t to give 125 ligands 5 in good yields and of
sufficient purity to be used in ligand-catalyzed reactions. These ligands w
ere tested in the copper-catalyzed conjugate addition of dialkyl zinc to cy
clic and acyclic enones, A multisubstrate high throughput screening of the
library was performed with an equimolar mixture of 2-cyclohexenone and 2-cy
cloheptenone (9 and 10, respectively, 0.2 mmol total), with 5.5 mol% ligand
5 (0.011 mmol) and 5 mol % Cu(OTf)(2) (OTf = OSO2CF3) (0.010 mmol) in 1:1
toluene/hexane at - 20 degreesC From the screening of the library, 5bhr was
identified as the best ligand, which yielded 3-ethylcyclohexanone (12) and
3-ethylcycloheptanone (13) in 82% and 81% cc, respectively, and complete c
onversions. Under optimized conditions (2.75 mol% 5bhr, 2.5 mol% copper(t)
triflate, toluene as reaction solvent), improved results were obtained for
12 (90% cc, 93% yield) and for 13 (91% cc, 95% yield). Selected ligands 5 w
ere also tested in the addition of Me2Zn to 2-cyclohexenone (9, cc up to 79
%). of Et2Zn to 2-cyclopentenone (11, cc up to 80%) and to acyclic enones 1
6 and 17 (ce up to 50%).