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手性短咬合P-X-P(X = C、N、O)配体的螯合与桥连配位在对映选择性钯催化的烯丙基取代反应中的作用

Effect of chelating vs. bridging coordination of chiral short-bite P-X-P (X=C, N, O) ligands in enantioselective palladium-catalysed allylic substitution reactions.

作者信息

Calabro GianPiero, Drommi Dario, Bruno Giuseppe, Faraone Felice

机构信息

Dipartimento di Chimica Inorganica, Chimica Analitica, Chimica Fisica dell'Universita di Messina Salita Sperone 31, Villaggio S. Agata, I-98166 Messina, Italy.

出版信息

Dalton Trans. 2004 Jan 7(1):81-9. doi: 10.1039/b309385a. Epub 2003 Nov 14.

Abstract

The chiral short-bite ligands (Ra,Ra)-bis(dinaphthylphosphonito)methane, (Ra,Ra)-1, (Ra,Ra)-bis-dinaphthylpyrophosphite, (Ra,Ra)-2, (Sc)-bis(diphenylphosphino)-sec-butylamine, (Sc)-3, (Ra,Ra)-bis(dinaphthylphosphonito)phenylamine, (Ra,Ra)-4a, (Ra,Ra,Sc)-bis(dinaphthylphosphonito)-sec-butylamine, (Ra,Ra,Sc)-4b, and (Ra,Sc)-(dinaphthylphosphonito)(diphenylphosphino)-sec-butylamine, (Ra,Sc)-5, have been synthesised. The cationic palladium-allyl mononuclear chelate, [Pd(eta3-PhCHCHCHPh)(mu-L-Lshort-bite)]PF6 [L-Lshort-bite=(Sc)-3, (Ra,Ra)-4a, (Ra,Ra,Sc)-4b and (Ra,Sc)-5 for complexes, and, respectively] and binuclear bridged [Pd(eta3-PhCHCHCHPh)(mu-Ra,Ra-2)]2(PF6)2, 12, have been isolated. The short-bite chiral ligands synthesised have been tested in the palladium-allyl catalysed substitution reaction of 1,3-diphenylallyl acetate with dimethyl malonate. The catalytic system was studied, in solution, by a multinuclear NMR technique. In the catalytically active species formed with (Ra,Ra)-2 ligand, [Pd(eta3-PhCHCHCHPh)(Ra,Ra-2)]2(PF6)2, 12, the palladium(II) centres are bridged by two ligands which are forced to adopt a nearly cis-coordination to allow coordination of the allyl-moiety. Semiempirical calculations on a biphenyl-model molecule, similar to the species 12, indicate that this situation induces a strain and rigid conformation in the chiral ligands, which produce differences in the terminal allyl carbon atoms. As consequence, the catalytic product was obtained with an enantiomeric excess of 57.1% in the S form. A low e.e. value was obtained when the (Ra,Ra)-1, (Sc)-3, (Ra,Ra)-4a, (Ra,Ra,Sc)-4b and (Ra,Sc)-5 ligands have been tested in the same palladium-catalysed reaction.

摘要

已经合成了手性短咬合配体(Ra,Ra)-双(二萘基膦酸酯)甲烷,(Ra,Ra)-1,(Ra,Ra)-双二萘基焦亚磷酸酯,(Ra,Ra)-2,(Sc)-双(二苯基膦基)-仲丁胺,(Sc)-3,(Ra,Ra)-双(二萘基膦酸酯)苯胺,(Ra,Ra)-4a,(Ra,Ra,Sc)-双(二萘基膦酸酯)-仲丁胺,(Ra,Ra,Sc)-4b,以及(Ra,Sc)-(二萘基膦酸酯)(二苯基膦基)-仲丁胺,(Ra,Sc)-5。已经分离出阳离子钯-烯丙基单核螯合物[Pd(η³-PhCHCHCHPh)(μ-L-L短咬合)]PF₆ [对于配合物,L-L短咬合分别为(Sc)-3、(Ra,Ra)-4a、(Ra,Ra,Sc)-4b和(Ra,Sc)-5]以及双核桥连的[Pd(η³-PhCHCHCHPh)(μ-Ra,Ra-2)]₂(PF₆)₂,12。所合成的短咬合手性配体已在钯-烯丙基催化的1,3-二苯基烯丙基乙酸酯与丙二酸二甲酯的取代反应中进行了测试。通过多核NMR技术在溶液中研究了催化体系。在用(Ra,Ra)-2配体形成的催化活性物种[Pd(η³-PhCHCHCHPh)(Ra,Ra-2)]₂(PF₆)₂,12中,钯(II)中心由两个配体桥连,这两个配体被迫采取近乎顺式配位以允许烯丙基部分配位。对与物种12相似的联苯模型分子进行的半经验计算表明,这种情况在手性配体中诱导了应变和刚性构象,这在末端烯丙基碳原子上产生了差异。因此,催化产物以S形式获得了57.1%的对映体过量。当在相同的钯催化反应中测试(Ra,Ra)-1、(Sc)-3、(Ra,Ra)-4a、(Ra,Ra,Sc)-4b和(Ra,Sc)-5配体时,获得了较低的对映体过量值。

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