Rh-catalyzed enantioselective conjugate addition of arylboronic acids with a dynamic library of chiral tropos phosphorus ligands

被引:58
作者
Monti, Chiara
Gennari, Cesare
Piarulli, Umberto
机构
[1] Univ Milan, Dipartimento Chim Organ & Ind, Ctr Eccellenza CISI, ISTM,CNR, I-20133 Milan, Italy
[2] Univ Studi Insubria, Dipartimento Sci Chim & Ambientali, I-22100 Como, Italy
关键词
asymmetric catalysis; atropisomerism; enones; NMR spectroscopy; P ligands; rhodium;
D O I
10.1002/chem.200600960
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
A library of 19 chiral tropos phosphorus ligands, based on a free-to-rotate (tropos) biphenol unit and a chiral P-bonded alcohol (11 phosphites, 1-P(O)(2)O to 11-P(O)(2)O) or secondary amine (8 phosphoramidites, 12-P(O)(2)N to 19-P(O)(2)N), were screened, individually and in combinations of two, in the rhodium-catalyzed asymmetric conjugate addition of arylboronic acids to enones and enoates. High enantioselectivities (up to 99 % ee) and excellent yields were obtained in the addition to either cyclic or acyclic substrates. The flexible biphenolic P ligands outperformed the analogous rigid binaphtholic P ligands. Variable-temperature P-31 NMR studies revealed that the biphenolic ligands are tropos even at low temperature. Only below 190 K was a coalescence observed; upon further cooling, two atropisomers were detected. The Rh homocomplexes ([Rh(L-a)2](+)) were also studied: in general, a single doublet (P-Rh coupling) was observed in the case of the biphenolic phosphite ligands, over the temperature range 380-230 K, demonstrating their tropos nature in the rhodium complexes even at low temperatures. On the other hand, the phosphoramidites showed different behaviors depending on the structure of the ligand and on the nature of the rhodium source. The spectrum at 230 K of the coalescence observed; upon further cooling, two atropisomers were detected. The Rh homocomplexes ([Rh(L-a)21(+)) were also studied: in general, a single doublet (P-Rh coupling) was observed in the case of the biphenolic phosphite ligands, over the temperature range 380-230 K, demonstrating their tropos nature in the rhodium complexes even at low temperatures. On the other hand, the phosphoramidites showed different behaviors depending on the structure of the ligand and on the nature of the rhodium source. The spectrum at 230 K of the mixture of [Rh(acac)(eth)(2)] (eth = C2H4) with phosphite 6-P(O)(2)O and lphosphoramidite 19-P(O)(2)N (the most enantioselective ligand combination in the conjugate addition reaction) revealed the presence of four homocomplexes (total approximately 40%: [Rh-{6-P(O)(2)O}(2)], [Rh{(aR)-19-P(O)(2)N-2], [Rh-(aR)-19-P(O)(2)N}(2)], [Rh{(aS)-19-P(O)(2)N-2}{(aS)-19-P(O)(2)N}]) and one heterocomplex, [Rh{6-P(O)(2)O}{(aR)-19-P(O)(2)N}] (approximately 60%) In the heterocomplex, the biphenol-derived phosphite is free to rotate (tropos) while the biphenol-derived phosphoramidite shows a temperature-dependent troposlatropos behavior (coalescence temperature= 310 K).
引用
收藏
页码:1547 / 1558
页数:12
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