Calabro GianPiero, Drommi Dario, Bruno Giuseppe, Faraone Felice
Dipartimento di Chimica Inorganica, Chimica Analitica, Chimica Fisica dell'Universita di Messina Salita Sperone 31, Villaggio S. Agata, I-98166 Messina, Italy.
Dalton Trans. 2004 Jan 7(1):81-9. doi: 10.1039/b309385a. Epub 2003 Nov 14.
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.
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。